Aditi Das Lab @Georgia Tech Chem (@aditida38734987) 's Twitter Profile
Aditi Das Lab @Georgia Tech Chem

@aditida38734987

Lipid biochemist with interest in endocannabinoids, eicosanoids & cytochrome P450s. Also a vocalist, mom and an eldritch philosopher.#lipidtime

ID: 888124573379551233

linkhttps://sites.google.com/site/aditidaspro calendar_today20-07-2017 19:52:53

449 Tweet

585 Followers

620 Following

eLife - the journal (@elife) 's Twitter Profile Photo

Molecular simulations and #CryoEM characterise the interactions of an ion channel with 25 lipids. elifesciences.org/articles/86016…

Molecular simulations and #CryoEM characterise the interactions of an ion channel with 25 lipids. elifesciences.org/articles/86016…
Georgia Tech College of Sciences (@gtsciences) 's Twitter Profile Photo

Led by @GT_Chem Professor Raquel Lieberman and Tech alumna Emily Saccuzzo, new glaucoma research could lead to more treatment and prevention pathways for diseases associated with large, aggregating proteins — like Alzheimer's and Parkinson's: b.gatech.edu/3In98ud

Led by @GT_Chem Professor Raquel Lieberman and Tech alumna Emily Saccuzzo, new glaucoma research could lead to more treatment and prevention pathways for diseases associated with large, aggregating proteins — like Alzheimer's and Parkinson's: b.gatech.edu/3In98ud
Nature Communications (@naturecomms) 's Twitter Profile Photo

Vinayak Agarwal, McShan Lab @ Georgia Tech and colleagues based at Georgia Tech College of Sciences and GT (Bio)chemistry reveal the structure of proteusin peptides. A small, unstructured region in the proteusin leader is sufficient for interaction with a halogenase that brominates the terminal Trp residue nature.com/articles/s4146…

<a href="/gt_vinny/">Vinayak Agarwal</a>, <a href="/mcshanNMR/">McShan Lab @ Georgia Tech</a> and colleagues based at <a href="/GTSciences/">Georgia Tech College of Sciences</a> and <a href="/GT_CHEM/">GT (Bio)chemistry</a> reveal the structure of proteusin peptides. A small, unstructured region in the proteusin leader is sufficient for interaction with a halogenase that brominates the terminal Trp residue
nature.com/articles/s4146…
Rosemary Cater, PhD (@rosemaryjcater) 's Twitter Profile Photo

(1/8) Do you eat enough choline? Have you even heard of it?? Choline is super important for the brain and must come from your diet 🐟🥚🥦 Here nature we show that FLVCR2 transports choline into the brain and use #cryoEM to show how! 🧠🔬 Filippo Mancia nature.com/articles/s4158…

Aditi Das Lab @Georgia Tech Chem (@aditida38734987) 's Twitter Profile Photo

I extend heartfelt congrats to my postdoctoral advisor, Steve Sligar on his election to the NAS. His profound contributions to P450 mechanism and revolutionizing research on membrane proteins using Nanodiscs have had a significant impact on the research community.

Aditi Das Lab @Georgia Tech Chem (@aditida38734987) 's Twitter Profile Photo

Das Lab alumni Dr. William Arnold publishes this interesting paper on the structural basis of TRPV1 modulation by endogenous bioactive lipids. nature.com/articles/s4159…

Aditi Das Lab @Georgia Tech Chem (@aditida38734987) 's Twitter Profile Photo

We are deeply grateful to NIGMS-NIH for funding the R35 Outstanding Investigator Award (MIRA) for Lipid Metabolism Research, which will support Das Lab over the next five years. A heartfelt thank you to my students for their incredible efforts !

We are deeply grateful to NIGMS-NIH for funding the R35 Outstanding Investigator Award (MIRA) for Lipid Metabolism Research, which will support Das Lab over the next five years. A heartfelt thank you to my students for their incredible efforts !
Jeremy Baskin (@basktastic) 's Twitter Profile Photo

Fascinating study Nature Communications from Tibor Rohacs showing that phosphatidic acid can regulate PIEZO2, the mechanosensitive ion channel — and so glad to see yet another application “in the wild” of optoPLD, Reika Tei’s optogenetic membrane editor for phosphatidic acid! #lipidtime

Fascinating study <a href="/NatureComms/">Nature Communications</a> from <a href="/RohacsTibor/">Tibor Rohacs</a> showing that phosphatidic acid can regulate PIEZO2, the mechanosensitive ion channel — and so glad to see yet another application “in the wild” of optoPLD, <a href="/ReikaTei/">Reika Tei</a>’s optogenetic membrane editor for phosphatidic acid! #lipidtime