Steven Banik (@stevenmbanik) 's Twitter Profile
Steven Banik

@stevenmbanik

Chemical biologist; interested in rewiring the cell | Asst Prof. @StanfordUChem & @Stanford_ChEMH | stevenbanik.bsky.social

ID: 1111768055225311232

calendar_today29-03-2019 23:12:14

178 Tweet

1,1K Followers

196 Following

Carolyn Bertozzi (@carolynbertozzi) 's Twitter Profile Photo

Check out this new method for peptide sequencing via DNA barcoding by ⁦The Soh Lab @ Stanford⁩ and coworkers ⁦Stanford Engineering⁩! Nice use of #bioorthogonal chemistry 😃 Peptide sequencing via reverse translation of peptides into DNA | bioRxiv biorxiv.org/content/10.110…

Hypothesis Fund (@hypothesisfund) 's Twitter Profile Photo

🎉 Today, we celebrate 2⃣ years of scouts, seed grants, and innovative science!🧬 @HypothesisFund CEO & Founder, David Sanford, reflects upon our milestones and share learnings important for the years ahead. Here's to exciting and impactful frontiers! linkedin.com/pulse/hypothes…

Steven Banik (@stevenmbanik) 's Twitter Profile Photo

Excited and honored to receive support from @OnoPharmaFound! Awesome to join this community of amazing chemical biologists.

Bianxiao Cui (@bianxiaoc) 's Twitter Profile Photo

Membrane curvature promotes ER-PM contacts in cardiomyocytes. Excited to share our work published in Nature Cell Biology today. Congratulations to Yang and the team! nature.com/articles/s4155…

Sarafan ChEM-H (@stanford_chemh) 's Twitter Profile Photo

.Steven Banik,Christine Isadora Ng & team devised a new class of molecules called TRAMs to convince natural shuttles to bring misplaced, disease-related proteins back to their homes. This could lead to new treatments for cancers and neurodegeneration stanford.io/3XRzVY9

.<a href="/StevenMBanik/">Steven Banik</a>,<a href="/tineisadora/">Christine Isadora Ng</a> &amp; team devised a new class of molecules called TRAMs to convince natural shuttles to bring misplaced, disease-related proteins back to their homes. This could lead to new treatments for cancers and neurodegeneration stanford.io/3XRzVY9
Green Ahn (@green_ahn) 's Twitter Profile Photo

Thrilled to share our work on novo protein LYTAC(pLYTAC)/EndoTag in @nature! Using de novo protein design, we created endocytosis triggering binding proteins (EndoTags) to degrade extracellular targets and amplify receptor signaling. nature.com/articles/s4158…

Bashor Lab (@bashorlab) 's Twitter Profile Photo

🚨NEW PUBLICATION ALERT🚨: In a paper out today in Science Magazine we describe a way to build synthetic phosphorylation circuits with customizable sense-and-response functions in human cells. Check it out at science.org/doi/10.1126/sc…. 🧵1/n

Carolyn Bertozzi (@carolynbertozzi) 's Twitter Profile Photo

Landmark preprint from Lycia Therapeutics, first example of catalytic #LYTAC (cataLYTAC) design for potent and durable extracellular #TPD. Demonstrated with design of LYTAC that clears IgE in NHPs, excited to see this technology advance to the clinic 🎉