Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile
Structural Biology at St. Jude Children's Hospital

@stjudestructbio

Dept. of Structural Biology, St. Jude Children's Research Hospital @StjudeResearch

ID: 1162044059046809601

linkhttps://www.stjude.org/research/departments-divisions/structural-biology.html calendar_today15-08-2019 16:51:08

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Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

Closing remarks by M. Madan Babu! Thanks everyone for participating in our symposium and for sharing such exciting science. Let's keep the conversation going at the reception!!

Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

Great opportunity in our department: we are looking for a Director for the Cryo-EM Center. The Center is expanding and acquiring cryo-ET/CLEM capabilities, so this is a time of growth and much excitement! Come join our vibrant community at St. Jude! talent.stjude.org/research/jobs/…

Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

Another gem from Chia-Hsueh Lee out nature offers mechanistic insights into human VMAT2 — transporter that packs monoamine neurotransmitters into vesicles — including on MOA of inhibitors tetrabenazine and reserpine and transport of substrate serotonine. nature.com/articles/s4158…

Another gem from <a href="/TheCHLeeLab/">Chia-Hsueh Lee</a> out <a href="/Nature/">nature</a> offers mechanistic insights into human VMAT2 — transporter that packs monoamine neurotransmitters into vesicles — including on MOA of inhibitors tetrabenazine and reserpine and transport of substrate serotonine.

nature.com/articles/s4158…
Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

A #GPCR milestone from M. Madan Babu & Franziska Heydenreich, with Kobilka @stanford Michel Bouvier. Integrating pharmacological and structural data on beta2AR reveals the allosteric network that translates and decodes adrenaline binding into signaling response. science.org/doi/10.1126/sc…

A #GPCR milestone from <a href="/m_madan_babu/">M. Madan Babu</a> &amp; <a href="/fmheydenreich/">Franziska Heydenreich</a>, with Kobilka @stanford <a href="/Michel_Bouvier/">Michel Bouvier</a>. Integrating pharmacological and structural data on beta2AR reveals the allosteric network that translates and decodes adrenaline binding into signaling response.
science.org/doi/10.1126/sc…
Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

From SunLab, Noma, Martin Turk & Dario Alessi's team MRC PPU, #cryoEM structures of LRRK2–Rab29, including tetrameric assembly with central protomers in sought-after kinase-active conformation — implications for #Parkinsons disease therapeutics science.org/doi/10.1126/sc…

From <a href="/JiSunLab/">SunLab</a>, <a href="/zhu_hanwen/">Noma</a>, Martin Turk &amp; Dario Alessi's team <a href="/mrcppu/">MRC PPU</a>, #cryoEM structures of LRRK2–Rab29, including tetrameric assembly with central protomers in sought-after kinase-active conformation — implications for #Parkinsons disease therapeutics
science.org/doi/10.1126/sc…
St. Jude Research (@stjuderesearch) 's Twitter Profile Photo

The St. Jude Cryo-EM Center empowers researchers with state-of-the-art tech to visualize genomes in unprecedented detail. Liz Kellogg ❄️🔬, PhD, and her team are now utilizing a “cold FEG” microscope to understand molecular processes for groundbreaking translational studies.

Structural Biology at St. Jude Children's Hospital (@stjudestructbio) 's Twitter Profile Photo

Out today in Nature Physics, exciting work from TanjaMittag in collaboration with Rohit V. Pappu and Priya R. Banerjee reveals how amino acid sequence determines the viscoelastic properties and physical aging of biomolecular condensates. nature.com/articles/s4156…

Out today in <a href="/NaturePhysics/">Nature Physics</a>, exciting work from <a href="/TanjaMittag/">TanjaMittag</a> in collaboration with <a href="/PappulabWashU/">Rohit V. Pappu</a> and <a href="/BanerjeeLab_UB/">Priya R. Banerjee</a> reveals how amino acid sequence determines the viscoelastic properties and physical aging of biomolecular condensates. nature.com/articles/s4156…