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Bhawik Jain

@jainbhawik.bsky.social
16 followers 27 following 3 posts

Cell and Molecular Biologist, Cricket enthusiast

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Reposted by Bhawik Jain
Gerry Hammond @gerryhammond.bsky.social · 05/03/2026
Beautiful desert views. Beautiful membrane biology. Join us for the #FASEB Phospholipids in Aging and Disease SRC in Arizona, July 26–30 2026. Registration is now open! So much better than a Lipid Droplets conference. Also, we're co-located with FASEB Lipid Droplets 😜
events.faseb.org
Phospholipids in Aging and Disease.
Explore breakthroughs in phospholipid research, membrane biology, and aging at this leading scientific conference.
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Reposted by Bhawik Jain
Jeremy Baskin @jeremybaskin.bsky.social · 03/01/2026
To all lipid-curious cell biologists: check out this comprehensive overview of lipid-based methods by @gerryhammond.bsky.social and colleagues in @jcb.org — a school of Babel fish for #lipidtime: rupress.org/jcb/article/...
rupress.org
The cell biologist’s guide to detecting and modulating membrane phospholipids | Journal of Cell Biology | Rockefeller University Press
Worcester et al. describe a suite of molecular tools and approaches that can be used to probe and experimentally study lipids.
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Reposted by Bhawik Jain
Nature Cell Biology @natcellbio.nature.com · 13/08/2025
🍨Interested in reading more about the study? Here is the N&Vs article written by Michael Salsaa & Gregory D. Fairn. 👉https://rdcu.be/eADFu bit.ly/45zxHiL
bit.ly
Phosphoinositide flipping governs neomycin sensitivity - Nature Cell Biology
Neomycin toxicity in eukaryotic cells stems from its binding to phosphoinositides, primarily confined to the inner leaflet of the plasma membrane. New research reveals a complex lipid-trafficking path...
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Reposted by Bhawik Jain
Nature Cell Biology @natcellbio.nature.com · 13/08/2025
🍹 @grahamlab-vandy.bsky.social @jainbhawik.bsky.social & co report that the Neo1 P4-ATPase flips the #lipid PI4P across the #Golgi membrane to the cytosolic leaflet, preventing PI4P exposure and thereby conferring neomycin resistance. bit.ly/45tauP7
bit.ly
P4-ATPases control phosphoinositide membrane asymmetry and neomycin resistance - Nature Cell Biology
Jain et al. report that the Neo1 P4-ATPase flips the lipid PI4P across the Golgi membrane to the cytosolic leaflet, preventing PI4P exposure and thereby conferring neomycin resistance.
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Bhawik Jain @jainbhawik.bsky.social · 14/07/2025
Excited to share our latest work published in @natcellbio.nature.com! We identify Neo1 as a novel phosphoinositide flippase that maintains membrane asymmetry and provides resistance to neomycin.@grahamlab-vandy.bsky.social. Check out the article and News & Views here rdcu.be/eweby rdcu.be/eweh9
rdcu.be
P4-ATPases control phosphoinositide membrane asymmetry and neomycin resistance
Nature Cell Biology - Jain et al. report that the Neo1 P4-ATPase flips the lipid PI4P across the Golgi membrane to the cytosolic leaflet, preventing PI4P exposure and thereby conferring neomycin...
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Reposted by Bhawik Jain
Graham Lab @grahamlab-vandy.bsky.social · 30/04/2025
As April comes to a close, we wanted to share updates for the first quarter of 2025!!
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