{"id":2554,"date":"2022-10-13T12:13:24","date_gmt":"2022-10-13T11:13:24","guid":{"rendered":"https:\/\/ukqsar.org\/?p=2554"},"modified":"2022-10-13T12:13:28","modified_gmt":"2022-10-13T11:13:28","slug":"ukqsar-newsletter-spring-2022","status":"publish","type":"post","link":"https:\/\/ukqsar.org\/index.php\/2022\/10\/13\/ukqsar-newsletter-spring-2022\/","title":{"rendered":"UKQSAR Newsletter Spring 2022"},"content":{"rendered":"\n<figure class=\"wp-block-table\"><table><tbody><tr><td><strong>UK-QSAR Spring 2022<\/strong><\/td><\/tr><tr><td><strong>The UK-QSAR and Cheminformatics Group<\/strong><\/td><\/tr><tr><td><strong>Welcome to the Spring 2022 UK-QSAR Newsletter!<\/strong><br><br>For the first time in two years, our next meeting is planned to be a face-to-face event.\u00a0 The pandemic may not be over, but with many having already returned to the office\/lab,\u00a0 the take-up of vaccines, the immunity acquired from previous infection, and the recent availability of therapeutic antibody treatments and anti-virals, the time seems right to try out an in-person meeting in what could be the \u201cnew normal\u201d environment we\u2019ll all need to get used to.\u00a0 As such, we would like to encourage attendees to take a lateral flow test on the morning of the meeting, and (obviously!) only to attend if that is negative. LFTs continue to be freely available from UK pharmacies until the end of March.\u00a0 Mask wearing will, of course, be optional, but is encouraged.The meeting will be on Tuesday 26th April 2022 at 9am, and will be held at Downing College in Cambridge.\u00a0 The event will be hosted by\u00a0<a href=\"https:\/\/www.eyesopen.com\/\" target=\"_blank\" rel=\"noreferrer noopener\">OpenEye Scientific<\/a>\u00a0and is themed around Free Energy Calculations in Drug Discovery.\u00a0 More details on the meeting and the venue are\u00a0<a href=\"https:\/\/ukqsar.org\/index.php\/current-newsletter\/#Venue\">below<\/a>.\u00a0 Registration is free, but attendees will need to\u00a0<a href=\"https:\/\/www.eventbrite.com\/e\/uk-qsar-spring-2022-meeting-tickets-276008447697\" target=\"_blank\" rel=\"noreferrer noopener\">register<\/a>\u00a0prior to the event.\u00a0 Abstracts and references provided by the speakers are provided\u00a0<a href=\"https:\/\/ukqsar.org\/index.php\/current-newsletter\/#Abs\">below<\/a>.<br><br>One possible effect of the pandemic has been an upsurge of interest \u2013 and indeed investment \u2013 in our sector.\u00a0 New start-ups abound, and the job market for computational &amp; medicinal chemists seems more buoyant than ever.\u00a0 We look at some of the reasons for the uptick in the biotech sector and whether it\u2019s here to stay\u00a0<a href=\"https:\/\/ukqsar.org\/index.php\/current-newsletter\/#AF\">below<\/a>.  The format for the Autumn 2022 Meeting is still under discussion and will be reviewed in due course.<br><br>You\u2019ll also find the regular articles on\u00a0<a href=\"https:\/\/ukqsar.org\/index.php\/current-newsletter\/#Jobs\">Jobs<\/a>\u00a0and\u00a0<a href=\"https:\/\/ukqsar.org\/index.php\/current-newsletter\/#Meetings\">Upcoming Meetings.<\/a><br><br>As ever, please send any feedback or suggestions you have for future newsletters to Susan Boyd at\u00a0\u00a0<a href=\"mailto:newsletter@ukqsar.org\">newsletter@ukqsar.org.<\/a><br><br><strong>Spring Meeting Information<\/strong><br><strong><br><\/strong>The meeting will be held on Tuesday 26th April 2022 at Downing College, Cambridge.\u00a0\u00a0As ever the meeting is free to attend, although delegates will need to\u00a0<a href=\"https:\/\/www.eventbrite.com\/e\/uk-qsar-spring-2022-meeting-tickets-276008447697\" target=\"_blank\" rel=\"noreferrer noopener\">register<\/a>\u00a0before 25th April.\u00a0 For this meeting, hosted by\u00a0<a href=\"https:\/\/www.eyesopen.com\/\" target=\"_blank\" rel=\"noreferrer noopener\">OpenEye Scientific<\/a>,\u00a0 we will explore various aspects of binding free energy calculations, with topics covered including new methods for calculating such energies, through to the impact of FEP in design of large virtual libraries.\u00a0 Poster abstracts can be submitted during registration.<br><br>Speakers include Martin Packer of AstraZeneca,\u00a0 Jonathan Essex from the University of Southampton, David Hahn from Janssen, Francois Berenger from the University of Tokyo, Peter Coveney from the UCL, Hannah Bruce MacDonald from Merck, Bert de Groot from MPI Grottingen and several speakers from OpenEye.\u00a0 The provisional agenda is:<br><br>9:00: Open registration, coffee\/tea<br>9:45: Welcome and Opening Remarks,\u00a0<strong>Geoff Skillman<\/strong>, CSO, OpenEye Scientific<br><br><strong>Session 1<\/strong>\u00a0\u2014 Chair: Christopher Bayly, OpenEye Scientific<br>10:00:\u00a0<strong>Jonathan Essex<\/strong>, University of Southampton \u2013 Is the sampling of water in protein-ligand systems a solved problem?<br>10:30:\u00a0<strong>David Hahn<\/strong>, Janssen \u2013 Large Scale Free Energy Calculations in Drug Discovery<br><br>11:00 \u2013 11:30: Break<br><br><strong>Session 2<\/strong>\u00a0\u2014 Chair: Gunther Stahl, OpenEye Scientific<br>11:30:\u00a0<strong>Francois Berenger,<\/strong>\u00a0University of Tokyo \u2013 Lean-Docking: Exploiting Ligands\u2019 Predicted Docking Scores to Accelerate Molecular Docking<br>12:00:\u00a0<strong>Christopher Bayly,<\/strong>\u00a0OpenEye Scientific \u2013 Binding Free Energies in Orion: a Parallel Universe<br><br>12:30 \u2013 14:00: Lunch<br><br><strong>Session 3<\/strong>\u00a0\u2014 Chair: TBA<br>14:00:\u00a0<strong>Bert de Groot,\u00a0<\/strong>MPI Goettingen \u2013 High throughput relative and absolute non-equilibrium binding free energies with pmx<br>14:30:\u00a0<strong>Hannah Bruce Macdonald,\u00a0<\/strong>MSD \u2013 Application of free energy methods for lead optimisation<br><br>15:00 \u2013 15:30: Break<br><br><strong>Session 4<\/strong>\u00a0\u2014 Chair: Christopher Bayly, OpenEye Scientific<br>15:30:\u00a0<strong>Peter Coveney,<\/strong>\u00a0UCL \u2013 Assembling an arsenal to achieve reliable free energy calculations<br>16:00:\u00a0<strong>Martin Packer,<\/strong>\u00a0AstraZeneca \u2013 Impact of FEP in prospective molecular design \u2013 moving from single edges to large virtual libraries<br><br>16:30:\u00a0<strong>Geoff Skillman<\/strong>, OpenEye Scientific \u2013 Concluding remarks, poster winner announcement and close.<br><br><strong>About the Venue<\/strong><br><br>Downing College is located in the centre of Cambridge and Cambridge Railway Station is just 15 minutes\u2019 walk away. If you are travelling by car, Cambridge park and ride has free parking, and buses to the city centre cost three pounds for a return ticket \u2013 see\u00a0<a href=\"http:\/\/cambridgeparkandride.info\/index.shtml\" target=\"_blank\" rel=\"noreferrer noopener\">http:\/\/cambridgeparkandride.info\/index.shtml<\/a>\u00a0\u00a0for more details.\u00a0 Cambridge Bus Station is 10 minutes\u2019 walk from Downing College.\u00a0\u00a0If you require overnight accommodation please have a look at\u00a0<a href=\"https:\/\/www.visitcambridge.org\/accommodation\" target=\"_blank\" rel=\"noreferrer noopener\">https:\/\/www.visitcambridge.org\/accommodation<\/a>\u00a0for details of hotels in the city centre, or\u00a0<a href=\"https:\/\/www.universityrooms.com\/en-GB\/city\/Cambridge\" target=\"_blank\" rel=\"noreferrer noopener\">https:\/\/www.universityrooms.com\/en-GB\/city\/Cambridge<\/a>\u00a0if you\u2019d consider staying in nearby college accommodation.<br><br>Downing College was founded in 1800 by a bequest from Sir George Downing, using inherited wealth from his grandfather, who not only built 10 Downing Street, but also served under both Cromwell &amp; Charles II.\u00a0 Sir George had no direct heirs (since his child bride refused to live with him, instead opting to serve as a Maid of Honour to Queen Anne) and left his estate to his cousin, Jacob.\u00a0 After much legal dispute, eventually the family allowed the bequest to be used to set up the college, and it was granted a Royal Charter in 1800. It\u00a0is often described as the oldest of the new colleges and the newest of the old.\u00a0Downing College was formed \u201cfor the encouragement of the study of Law and Medicine and of the cognate subjects of Moral and Natural Science\u201d, and has developed a reputation amongst Cambridge colleges for Law\u00a0and Medicine.Downing has been named one of the two most eco-friendly colleges in Cambridge.<br><br><img loading=\"lazy\" decoding=\"async\" width=\"474\" height=\"234\" class=\"\" src=\"https:\/\/cdn.ticketsource.co.uk\/images\/promoter\/banner\/31044-15821973736368.jpeg\"><br><br>Now the college sits within an impressive 20 acres of gardens &amp; grounds, right in the centre of Cambridge.\u00a0\u00a0<br><br><strong>The Post-Pandemic Biotech Surge<\/strong><br><em>Susan Boyd, CompChem Solutions Ltd.<\/em><br><br>Anyone working in computational chemistry, chemoinformatics or medicinal chemistry in the last few months can hardly have failed to notice the buoyancy of the job market.\u00a0 Our scientists and business professionals are in high demand, often being targeted directly by recruitment consultants seeking to catapult them from their current role into some exciting new start-up or newly growing organisation.\u00a0 But what underlies this uptick in investment and jobs in our sector?\u00a0 And will it last?Undoubtedly, the pandemic has raised the profile of biotech, and investors appear more likely to try a punt on a new biotech venture, hoping to be the backer of the next big money-spinning technology for healthcare.\u00a0 The UK\u2019s record in sequencing the Covid variants, developing diagnostics, vaccines and treatments for Covid has attracted not only investment from venture capital, but in 2021 the scale and number of IPOs for UK biotechs increased by 434% compared to the previous year\u00a0<a href=\"https:\/\/www.bioindustry.org\/news-listing\/investment-in-uk-biotech-jumps-60-to-45bn-in-2021.html\" target=\"_blank\" rel=\"noreferrer noopener\">(ref)<\/a>.\u00a0 But new technologies (eg AI, new target-finding platforms, immunotherapies) have also played their part, as has the creation of government-funded programmes to help bridge the gap between business and research (eg the Catapult Network).\u00a0Whilst the UK leads Europe in terms of new biotech start-ups and funding for those companies (<a href=\"https:\/\/www.mckinsey.com\/industries\/life-sciences\/our-insights\/the-uk-biotech-sector-the-path-to-global-leadership\" target=\"_blank\" rel=\"noreferrer noopener\">ref<\/a>) it still lags significantly behind the USA and China for both early stage funding and in particular, translation of new science into commercialised products.<br><br><img loading=\"lazy\" decoding=\"async\" width=\"572\" height=\"576\" class=\"\" src=\"https:\/\/www.mckinsey.com\/~\/media\/mckinsey\/industries\/life%20sciences\/our%20insights\/the%20uk%20biotech%20sector%20the%20path%20to%20global%20leadership\/svgz-uk-biotech-v13-ex1.svgz\" alt=\"The UK biotech sector\u2019s main challenge remains translating world-class science into commercialized products.\"><br><br>UK companies tend to be less successful at raising capital for late-stage funding than their European counterparts.\u00a0 As such, many industry leaders believe that access to US investors is essential for the success of UK biotechs, since many UK start-ups may end up seeking an IPO on a US exchange to access later-stage finance.If this current biotech bubble is to last, we will need our new technologies to deliver, we will need to attract, retain and coach our life science talent for both early stage and late stage business needs, we will need to foster good relations with US markets, and leverage our partnerships with the best UK life sciences resources available (eg NHS data, UK Biobank, and Innovate UK funded programmes).\u00a0 The near-future looks bright for biotech in the UK.\u00a0 Beyond that, the outlook is less predictable.<br><br><strong>Abstracts &amp; Pre-Reading Material<\/strong><br><br>Some speakers have provided the following abstracts and references which might be of interest ahead of their talks.<br><br><strong>Francois Berenger,<\/strong>\u00a0University of Tokyo<br><em>Lean-Docking: Exploiting Ligands\u2019 Predicted Docking Scores to Accelerate Molecular Docking<\/em><br>In structure-based virtual screening (SBVS), a binding site on a protein structure is used to search for ligands with favorable nonbonded interactions. Because it is computationally difficult, docking is time-consuming and any docking user will eventually encounter a chemical library that is too big to dock. This problem might arise because there is not enough computing power or because preparing and storing so many three-dimensional (3D) ligands requires too much space. In this study, however, we show that quality regressors can be trained to predict docking scores from molecular fingerprints. Although typical docking has a screening rate of less than one ligand per second on one CPU core, our regressors can predict about 5800 docking scores per second. This approach allows us to focus docking on the portion of a database that is predicted to have docking scores below a user-chosen threshold. Herein, usage examples are shown, where only 25% of a ligand database is docked, without any significant virtual screening performance loss. We call this method \u201clean-docking\u201d. To validate lean-docking, a massive docking campaign using several state-of-the-art docking software packages was undertaken on an unbiased data set, with only wet-lab tested active and inactive molecules. Although regressors allow the screening of a larger chemical space, even at a constant docking power, it is also clear that significant progress in the virtual screening power of docking scores is desirable.<a href=\"https:\/\/www.researchgate.net\/publication\/350940167_Lean-Docking_Exploiting_Ligands\">https:\/\/www.researchgate.net\/publication\/350940167_Lean-Docking_Exploiting_Ligands\u2019_Predicted_Docking_Scores_to_Accelerate_Molecular_Docking<\/a>\u00a0<br><br><strong>Bert de Groot,\u00a0<\/strong>MPI Goettingen<br><em>High throughput relative and absolute non-equilibrium binding free energies with pmx<\/em><br>Alchemical free energy calculations have come of age. Based on rigorous first principles of statistical mechanics, these calculations explore physical paths not experimentally accessible and provide unprecedented accuracy in the prediction of processes as diverse as protein thermostability and ligand binding free energies. Based on the pmx framework coupled to the GROMACS molecular dynamics engine, results of high-throughput relative as well as absolute ligand binding free energies are presented.Suggested reading:<br><a href=\"https:\/\/doi.org\/10.1039\/C9SC03754C\">https:\/\/doi.org\/10.1039\/C9SC03754C<\/a><br><a href=\"https:\/\/doi.org\/10.1039\/D1SC03472C\">https:\/\/doi.org\/10.1039\/D1SC03472C<\/a><br><a href=\"https:\/\/doi.org\/10.1021\/acs.jcim.1c01445\">https:\/\/doi.org\/10.1021\/acs.jcim.1c01445<\/a><br><a href=\"https:\/\/doi.org\/10.48550\/arXiv.2201.06372\">https:\/\/doi.org\/10.48550\/arXiv.2201.06372<\/a>\u00a0<br><br><strong>Peter Coveney,<\/strong>\u00a0UCL<br><em>Assembling an arsenal to achieve reliable free energy calculations<\/em><br>The ability of rapidly and accurately predicting binding affinities of ligands to a target protein of interest would greatly facilitate drug discovery programs by enabling researchers to focus on the compounds with a high probability of being pharmacologically active. Both the machine learning (ML) and physics-based (PB) methods have been increasingly used for the free energy predictions in drug development projects. The methods individually have their own advantages and limitations, which fortunately complement each other. We have coupled the ML and PB into a coherent scientific workflow, bringing together several methods of which some have already been applied in drug discovery while others are relatively new to the field and yet to be adopted. Such a coupled approach creates synergies between PB and ML methods and can significantly improve the outcomes, in terms of both the accuracy of the predictions and the coverage of chemical space. The workflow can be applied to the entire process of early drug discovery stage which involves hit discovery, hit to lead, lead optimization, and evaluation of potential side effects and toxicities. A very large number of compounds can be generated and evaluated, which narrow down to performing several independent calculations concurrently at large scale to increase the throughput. The ensemble computing pattern is ideal for such scenarios, which employs a high throughput \u201cembarrassingly\u201d parallel workload. This workflow is a suite of applications that collectively are able to scale up to exascale machines. We have demonstrated that the innovative, iterative and interactive heterogeneous workflow has the potential to accelerate the existing drug discovery process.\u00a0<br><strong>Pre-reading references:<\/strong><br>A. Al Saadi,\u00a0<em>et al<\/em>., \u201cIMPECCABLE: Integrated Modeling PipelinE for COVID Cure by Assessing Better LEads,\u201d in 50th International Conference on Parallel Processing, Aug. 2021, Article No.: 40, pp. 1\u201312. DOI: 10.1145\/3472456.3473524.A. P. Bhati,\u00a0<em>et al<\/em>., \u201cPandemic Drugs at Pandemic Speed: Accelerating COVID-19 Drug Discovery with Hybrid Machine Learning- and Physics-based Simulations on High Performance Computers\u201d, Interface Focus, 11,\u00a020210018, DOI: 10.1098\/rsfs.2021.0018S. Wan, A. P. Bhati, S. J. Zasada and P. V. Coveney, \u201cRapid, accurate, precise and reproducible ligand\u2013protein binding free energy prediction\u201d, Interface Focus 10,\u00a02020007\u00a0(2020), DOI:10.1098\/rsfs.2020.0007\u00a0<br><br><strong>Martin Packer,<\/strong>\u00a0AstraZeneca<br><em>Impact of FEP in prospective molecular design \u2013 moving from single edges to large virtual libraries<\/em><br>Free energy perturbation (FEP) models provide precise and accurate predictions for protein-ligand binding affinity. Currently available GPU hardware enables us to generate data for a single ligand with compute times of a few hours. Given the potential accuracy of FEP models, it is very desirable to apply them to every ligand that we design, but compute time then becomes a severely limiting factor. Active learning FEP combines FEP data with machine learning algorithms, to generate FEP-based structure activity models using rationally selected subsets from a virtual library. We iterate between FEP and machine learning models until we judge that simple models are predictive for FEP, so that we can spare further detailed computation. In 2020 we applied this approach to a set of 16 active drug design projects within AstraZeneca. We used three approaches to design large virtual libraries and saw positive impact across a diverse set of protein targets. Over the course of 9 months we were able to generate 165,000 FEP data points and used those to prioritise synthesis of 445 molecules. We also used the models to generate detailed SAR maps for new hit series, which we exemplify here using a previously published series for the kinase EphB4. Active learning FEP takes us a step closer towards a design environment in which every virtual molecule is assessed on its predicted affinity and its ADME properties, to focus synthesis and test activities on molecules most likely to meet multiple endpoints required for successful drug design.<br>Suggested reading: <a href=\"https:\/\/doi.org\/10.1021\/acs.jcim.9b00367\">https:\/\/doi.org\/10.1021\/acs.jcim.9b00367<\/a>\u00a0<br><br><br><strong>Jobs<\/strong><br><br><a href=\"https:\/\/careers.astrazeneca.com\/job\/cambridge\/director-computational-chemistry\/7684\/25561568096\" target=\"_blank\" rel=\"noreferrer noopener\">Director, Computational Chemistry<\/a>, AstraZeneca, Cambridge, UK<br><a href=\"https:\/\/vrtx.wd5.myworkdayjobs.com\/en-US\/vertex_careers\/job\/Oxford-United-Kingdom\/Director--Computational-Chemistry--Data---Computational-Sciences---Oxford_REQ-13483\" target=\"_blank\" rel=\"noreferrer noopener\">Director, Computational Chemistry, Data &amp; Computational Sciences<\/a>, Oxford, UK<br><a href=\"https:\/\/www.linkedin.com\/jobs\/view\/2887373720\" target=\"_blank\" rel=\"noreferrer noopener\">Director\/Head of CADD<\/a>, Datatronics, Basel, Switzerland<br><a href=\"https:\/\/www.bristol.ac.uk\/jobs\/find\/details\/?jobId=267360\" target=\"_blank\" rel=\"noreferrer noopener\">Chair in Digital Chemistry<\/a>, University of Bristol, UK<br><a href=\"https:\/\/gsk.wd5.myworkdayjobs.com\/GSKCareers\/job\/Stevenage\/Post-Doctoral-Research-Associate-in-Machine-Learning-and-Optimisation_312922-1\" target=\"_blank\" rel=\"noreferrer noopener\">Post-Doctoral Research Associate in ML<\/a>, University of Cambridge and GSK,\u00a0UK<br><a href=\"https:\/\/www.linkedin.com\/jobs\/view\/2941445338\" target=\"_blank\" rel=\"noreferrer noopener\">Associate\/Senior Director CADD<\/a>, Ridgeline Discovery, Basel, Switzerland<br><a href=\"https:\/\/www.linkedin.com\/jobs\/view\/2969165519\/\" target=\"_blank\" rel=\"noreferrer noopener\">Head of Molecular Design<\/a>, Bayer, Wuppertal, Germany<br><a href=\"https:\/\/boards.greenhouse.io\/healx\/jobs\/5935974002?gh_src=a1a92bf62us\" target=\"_blank\" rel=\"noreferrer noopener\">Senior Chemoinformatician<\/a>, Healx, Cambridge, UK<br><a href=\"https:\/\/careers.astrazeneca.com\/job\/oss\/computational-chemist-phd\/7684\/25306135120\" target=\"_blank\" rel=\"noreferrer noopener\">Computational Chemist<\/a>, AstraZeneca, Oss, Netherlands<br><a href=\"https:\/\/evotecgroup.wd3.myworkdayjobs.com\/en-US\/Evotec_Career_Site\/details\/Computational-Chemist_REQ-04769?q=computational\" target=\"_blank\" rel=\"noreferrer noopener\">Computational Chemist<\/a>, Evotec, Abingdon, UK<br><a href=\"https:\/\/www.sygnaturediscovery.com\/careers\/vacancies\/senior-computational-chemist\/\" target=\"_blank\" rel=\"noreferrer noopener\">Senior Computational Chemist<\/a>, Sygnature Discovery, Nottingham or Alderley Park, UK<br><a href=\"https:\/\/www.linkedin.com\/jobs\/search\/?currentJobId=2930190668\" target=\"_blank\" rel=\"noreferrer noopener\">Senior Scientist \u2013 CADD<\/a>, Roche, Basel, Switzerland<br><a href=\"http:\/\/www.exscientia.ai\/careers\" target=\"_blank\" rel=\"noreferrer noopener\">Multiple positions<\/a>, Exscientia, Oxford, UK<br><a href=\"https:\/\/www.chemcomp.com\/Career.htm\" target=\"_blank\" rel=\"noreferrer noopener\">Application Scientist (and other roles)<\/a>, Chemical Computing Group, Cambridge, UK<br><a href=\"https:\/\/www.domainex.co.uk\/careers#26\" target=\"_blank\" rel=\"noreferrer noopener\">Head of Computational Chemistry<\/a>, Domainex, Cambridge, UK<br><a href=\"https:\/\/jobs.criver.com\/job\/Saffron-Walden-Senior-Scientist-CADD-CB10-1XL\/727659600\/\">Senior Scientist CADD<\/a>, Charles River Laboratories, Cambridge, UK<br><a href=\"https:\/\/jobs.criver.com\/job\/Saffron-Walden-Research-Leader-CADD-CB10-1XL\/717714400\/\" target=\"_blank\" rel=\"noreferrer noopener\">Research Leader CADD<\/a>, Charles River Laboratories, Cambridge, UK<br><a href=\"https:\/\/ccdc.peoplehr.net\/Pages\/JobBoard\/Opening.aspx?v=35c452d8-deec-4501-beaf-3b320ccf71f6\" target=\"_blank\" rel=\"noreferrer noopener\">Discovery Science Team Leader<\/a>, CCDC, Cambridge, UK<br><a href=\"https:\/\/www.lifearc.org\/wp-content\/uploads\/2022\/02\/Computational-Scientist-Drug-Discovery-Job-Advert.pdf\" target=\"_blank\" rel=\"noreferrer noopener\">Computational Chemistry Drug Discovery Scientist<\/a>, LifeArc, Stevenage, UK<br><a href=\"https:\/\/www.linkedin.com\/jobs\/view\/2979779802\" target=\"_blank\" rel=\"noreferrer noopener\">Computational Toxicologist<\/a>, Sanofi, Frankfurt, Germany<br><a href=\"https:\/\/www.linkedin.com\/jobs\/view\/2935076339\" target=\"_blank\" rel=\"noreferrer noopener\">Scientist, Computational Chemistry<\/a>, Lundbeck, Copenhagen, Denmark<br><a href=\"https:\/\/dewpointx.com\/careers\/scientist-sr-scientist-computational-chemistry-m-f-d\/\" target=\"_blank\" rel=\"noreferrer noopener\">Scientist\/Senior Scientist \u2013 Computational Chemistry<\/a>, Dewpoint Therapeutics, Frankfurt, Germany<br><a href=\"https:\/\/www.cresset-group.com\/about\/careers\/\" target=\"_blank\" rel=\"noreferrer noopener\">Various positions<\/a>, Cresset, Litlington, UK<br><a href=\"https:\/\/healx.io\/careers\/#jobs-section\" target=\"_blank\" rel=\"noreferrer noopener\">Various positions<\/a>, Healx, Cambridge\/Remote, UK<br><a href=\"https:\/\/www.benevolent.com\/jobs\" target=\"_blank\" rel=\"noreferrer noopener\">Various positions<\/a>, Benevolent.ai, London, UK<br><a href=\"https:\/\/turbineai.typeform.com\/to\/FNMZLTP7\" target=\"_blank\" rel=\"noreferrer noopener\">Principal Scientist, Computational Chemistry<\/a>, Turbine AI, Budapest\u00a0<br><br><strong>Upcoming Meetings<\/strong><br><br>The following meetings may be of interest to our readers:<br><br><a href=\"https:\/\/www.chemcomp.com\/UGM-2022-Europe.htm\" target=\"_blank\" rel=\"noreferrer noopener\">CCG UGM &amp; Conference (Europe)<\/a>, 17-20th May 2022, Amsterdam<br><a href=\"http:\/\/c-inf.net\/\" target=\"_blank\" rel=\"noreferrer noopener\">Cambridge Cheminformatics Meeting<\/a>, 1st June 2022<br><a href=\"https:\/\/www.cresset-group.com\/about\/events\/ugm-2022\/\" target=\"_blank\" rel=\"noreferrer noopener\">Andy Vinter Memorial Meeting<\/a>, 16th June 2022, Cambridge UK &amp; online<br><a href=\"https:\/\/www.milner.cam.ac.uk\/milner-symposium-2022\/\" target=\"_blank\" rel=\"noreferrer noopener\">Milner Therapeutics Symposium<\/a>, 28th June 2022, Cambridge UK &amp; online<br><a href=\"https:\/\/www.rscbmcs.org\/events\/aichem22\/\" target=\"_blank\" rel=\"noreferrer noopener\">5th Artificial Intelligence in Chemistry Symposium<\/a>, 1-2nd September 2022, Cambridge UK &amp; online<br><a href=\"https:\/\/www.euroqsar2022.org\/\" target=\"_blank\" rel=\"noreferrer noopener\">EuroQSAR<\/a>, 26-30th September 2022, Heidelberg<br><a href=\"https:\/\/ukqsar.org\/index.php\/category\/meetings\/\" target=\"_blank\" rel=\"noreferrer noopener\">UKQSAR Autumn 2022 Meeting<\/a>, Details TBC\u00a0\u00a0<\/td><\/tr><\/tbody><\/table><\/figure>\n","protected":false},"excerpt":{"rendered":"<p>UK-QSAR Spring 2022 The UK-QSAR and Cheminformatics Group Welcome to the Spring 2022 UK-QSAR Newsletter! For the first time in<\/p>\n","protected":false},"author":3,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_feature_clip_id":0,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_post_was_ever_published":false},"categories":[5],"tags":[],"class_list":["post-2554","post","type-post","status-publish","format-standard","hentry","category-newsletter"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 5.0.1.1 - aioseo.com -->\n\t<meta name=\"robots\" content=\"max-image-preview:large\" \/>\n\t<meta name=\"author\" content=\"Susan Boyd\"\/>\n\t<link rel=\"canonical\" href=\"https:\/\/ukqsar.org\/index.php\/2022\/10\/13\/ukqsar-newsletter-spring-2022\/\" \/>\n\t<meta name=\"generator\" content=\"All in One SEO 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