Time-resolved experiments are powerful, but difficult to interpret โฑ๏ธ๐
In "A Bayesian Approach to Interpret Time-Resolved Experiments Using Molecular Simulations" Carl and Simone developed an approach to use MD to interpret time-resolved experiments
https://t.co/UNbwtQXQ5p
Excited to share our new paper in @ProteinSociety ๐
We combine #BioEmu and SAXS ensemble optimization to characterize protein conformational heterogeneity, bridging AI-generated ensembles and experimental data.
https://t.co/DmARtp8VtR
#SAXS#MachineLearning@TAUMedFaculty
Excited to share our new paper in @ProteinSociety ๐
We combine #BioEmu and SAXS ensemble optimization to characterize protein conformational heterogeneity, bridging AI-generated ensembles and experimental data.
https://t.co/DmARtp8VtR
#SAXS#MachineLearning@TAUMedFaculty
๐จIt's finally out!๐ฅ | A few years after solving the structure of human cis-PT, we now tackle its dynamics in @NatureComms, revealing that a conserved interfacial loop serves as an allosteric hub, communicating with the active site to regulate catalysis. https://t.co/fZRY0UHjVg
๐จ Happy to share our new preprint in which we explore different layers of the phage-bacteria arms race.
The highlight: phage homing endonucleases attenuate bacterial defenses ๐คฏ
A ๐งต... (1/7)
#bacteriology#antiphage#T6SS@TelAvivUni@TAUMedFaculty
https://t.co/FJUg8Cyr6h
A huge Thank You to all the collaborators who contributed to this fun project @UdiQimron@HaitinLab@BursteinLab@canareck_, and congrats to the first author @tridib_mahata !
An open question remains - where will this be published? ๐
Excited to share our new paper in @FEBSJournal! ๐
We show how a #MYELOMA-linked GGPPS mutation tweaks hexamerization, substrate binding and product inhibition, revealing an unexpected layer of protein prenylation regulation
๐ https://t.co/c34uIT8YzQ
@peterslab1@TAUMedFaculty
๐จNew preprint alert! Wonder how a cancer-associated mutation in GGPPS impacts hexameric stoichiometry, substrate affinity, and product inhibition? Our results shed light on a novel regulatory mechanism in protein prenylation https://t.co/YtLpH9h7DY #MultipleMyeloma
How does a cytoplasmic enzyme make a membrane product? ๐ค๐งฌ
We found that a hydrophobic residue cluster helps the human cis-prenyltransferase feed its product into the ER membrane!
MD simulations + fluorescence = mechanistic insight ๐
๐https://t.co/NEPH55odQ1
Whenever we get a bioRxiv alert, we'are always curious to see what it brings. This time, the timing couldnโt have been better - a very pleasant surprise! ๐
https://t.co/cMy0QxkhEP
https://t.co/GjfGjDCecm
This was literally cool work. โ๏ธ We locked ourselves in the cold room to slow down the HDX and catch even the fastest dynamics. Bonus: It turns out you can manually capture a 2-second exchange reproducibly (next time we set up the quench flow!).