Tom Grossmann(@TomNGrossmann) 's Twitter Profileg
Tom Grossmann

@TomNGrossmann

Chemistry professor @VUamsterdam (my views) #peptidomimetics | #proteomimetics | #incypro | co-founder #incircular @incircular_bio

ID:1043924154737725440

linkhttp://www.grossmannlab.com calendar_today23-09-2018 18:04:48

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Roelfes Group(@RoelfesGroup) 's Twitter Profile Photo

It was a collaborative effort of Lars @LongLarf and Reuben Reuben B. Leveson-Gower to develop this system, supported by Henriette and Andy-Mark for a fantastic structural analysis.
Here’s the paper in nature: nature.com/articles/s4158…

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Felix Kaspar(@chemzymes) 's Twitter Profile Photo

Previously ChemRxiv, the final version of this study is now out in Nature Communications.

doi.org/10.1038/s41467…

This naturally occurring 'non-native' nucleoside has been sitting right under noses for a long time.

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Alex Spokoyny(@organomimetic) 's Twitter Profile Photo

Check out our work that just appeared in J. Am. Chem. Soc. on the development of the fastest organometallic Cys bioconjugation reagents: pubs.acs.org/doi/10.1021/ja…. Shout out to many UCLA Chem & Biochem collaborators on this project including: Maynard Group and Ken Houk.

Check out our work that just appeared in @J_A_C_S on the development of the fastest organometallic Cys bioconjugation reagents: pubs.acs.org/doi/10.1021/ja…. Shout out to many @uclachem collaborators on this project including: @group_maynard and @houk1000.
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The Matile Group(@matile_group) 's Twitter Profile Photo

Thiol-mediated uptake (TMU) is an intriguing enigma in current chemistry and biology. Our new paper in ACS Central Science provides a solid basis to understand TMU, enable and prevent entry into cells along at least three orthogonal dynamic covalent networks

pubs.acs.org/doi/10.1021/ac…

Thiol-mediated uptake (TMU) is an intriguing enigma in current chemistry and biology. Our new paper in @ACSCentSci provides a solid basis to understand TMU, enable and prevent entry into cells along at least three orthogonal dynamic covalent networks pubs.acs.org/doi/10.1021/ac…
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Pimchai Chaiyen(@pchaiyen) 's Twitter Profile Photo

Very happy to share our newly published work 'On the Mechanisms of Hypohalous Acid Formation and Electrophilic Halogenation by Non‐Native Halogenases' Work by Kridsadakorn Nook Prakinee Aisaraphon Phintha VISTEC
onlinelibrary.wiley.com/doi/10.1002/an…

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Gianluca Sbardella(@g_sbardella) 's Twitter Profile Photo

After the great talk on 14-3-3 proteins by Luc Brunsveld, another impressive talk at is given by Tom Grossmann, describing examples of how obtaining bioactive proteomimetics from protein structures.
EFMC
ACS Division of Medicinal Chemistry

After the great talk on 14-3-3 proteins by Luc Brunsveld, another impressive talk at #MedChemFrontiers24 is given by @TomNGrossmann, describing examples of how obtaining bioactive proteomimetics from protein structures. @EuroMedChem @AcsMedi
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Stephan Hacker(@StephanHacker2) 's Twitter Profile Photo

Very interesting talk by Tom Grossmann at . He talked about his group's exciting work on peptidomimetics including (bi)cyclic peptides for addressing challenging protein targets including β-catenin. doi.org/10.1002/anie.2…

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Alan Gerber(@Al_rebreG) 's Twitter Profile Photo

Very excited to start this ZonMw project! Together with Fred van Leeuwen Lab, we will investigate how cells selectively regulate tRNA genes. Two PhD positions available soon (NKI and AmsterdamUMC).
zonmw.nl/en/news/zonmw-…

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Christoph Nitsche(@NitscheLab) 's Twitter Profile Photo

We characterised the proteases of ten flaviviruses and identified broad-spectrum inhibitors. Pan-flavivirus drug discovery is important for our epidemic preparedness and response. Congratulations to Saan Voss ANU Research School of Chemistry. Published in Antiviral Research: doi.org/10.1016/j.anti…

We characterised the proteases of ten flaviviruses and identified broad-spectrum inhibitors. Pan-flavivirus drug discovery is important for our epidemic preparedness and response. Congratulations to Saan Voss @ANUChemistry. Published in Antiviral Research: doi.org/10.1016/j.anti…
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