Franziska Sendker (@sendkerfl) 's Twitter Profile
Franziska Sendker

@sendkerfl

Postdoc - designing proteins at Dana-Farber/Harvard Medical School | @EMBOFellows | formerly, evolutionary biochemistry at Max PIanck Marburg

ID: 1425502810108538881

calendar_today11-08-2021 17:02:19

91 Tweet

515 Followers

235 Following

Arvind S Pillai (@arvindspillai1) 's Twitter Profile Photo

Excited to announce our new paper on designing allosterically regulated protein assemblies from scratch, now published in nature! This collaborative effort included key contributions from Florian Praetorius, Abbas Idris, Annika Philomin, cweidle and others! nature.com/articles/s4158…

Giovanni Scarinci (@g_scarinci) 's Twitter Profile Photo

Excited to share this story now in Nature Communications where we investigate the molecular mechanisms behind the evolution of enhanced metabolic "addiction" between microbial partners in a synthetic community. rdcu.be/dRIE5 Many thanks to SourjikLab for an amazing time in Marburg

Excited to share this story now in <a href="/NatureComms/">Nature Communications</a> where we investigate the molecular mechanisms behind the evolution of enhanced metabolic "addiction" between microbial partners in a synthetic community. rdcu.be/dRIE5 Many thanks to <a href="/sourjik/">SourjikLab</a> for an amazing time in Marburg
Beau Dronsella (@bdronsella) 's Twitter Profile Photo

Glad to see my main PhD project finally out Nature Microbiology nature.com/articles/s4156… We show for the first time that a synthetic and engineered pathway can indeed exceed nature at one-carbon fixation.

Anuj Kumar (@anujr2d2) 's Twitter Profile Photo

Excited to share our latest work on the structure and mechanism of the ancient sodium-pumping Rnf complex, now out in Nature Communications nature.com/articles/s4146…

Biology+AI Daily (@biologyaidaily) 's Twitter Profile Photo

Zero-shot design of drug-binding proteins via neural selection-expansion 1. This study introduces a powerful method for the zero-shot design of small-molecule binding proteins using neural networks. The approach combines two reciprocal neural networks, LASErMPNN and

Zero-shot design of drug-binding proteins via neural selection-expansion

1. This study introduces a powerful method for the zero-shot design of small-molecule binding proteins using neural networks. The approach combines two reciprocal neural networks, LASErMPNN and
Georg Hochberg (@kahochberg) 's Twitter Profile Photo

New paper from the lab from @SriramGarg. We introduce a general substitution matrix for structural phylogenetics. I think this is a big deal, so read on below if you think deep history is important. academic.oup.com/mbe/advance-ar…