Abdou Rachid Thiam

@abdourachidthiam.bsky.social

@CNRS Research Director @ENS_ULM. Interested in Droplets, Metabolism, Organelles, Lipids, BioPhysics, Microfluidics & Co, 🇸🇳

This one is really important. Great work! Some papers don't go on the reading list, you open them right away. 🤓 I can't help but wonder whether there's another level of regulation via acyl chain identity... the PS threshold should highly depend on saturation degree.

Abdou Rachid Thiam@abdourachidthiam.bsky.social · 9h ago

A long-standing mystery in cholesterol biology: why is ER cholesterol sensing so switch-like rather than gradual? Our answer: cholesteryl ester phase separation in the ER membrane, which converts small lipid changes into a cooperative transcriptional response. www.biorxiv.org/content/10.6...

A long-standing mystery in cholesterol biology: why is ER cholesterol sensing so switch-like rather than gradual? Our answer: cholesteryl ester phase separation in the ER membrane, which converts small lipid changes into a cooperative transcriptional response. www.biorxiv.org/content/10.6...

ER cholesteryl ester phase separation underlies switch-like cholesterol sensing

Cellular lipid homeostasis requires mechanisms that detect subtle changes in lipid abundance and trigger rapid, coordinated responses. The INSIG/SCAP/SREBP2 pathway provides a central feedback system ...

biorxiv.org

To understand what a lipid does, we need to know its partners. Which proteins bind lipids and how can we capture those interactions? Our new Nature Protocols paper provides a practical, step-by-step guide to identifying lipid-binding proteins. 🧵

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Excited to see this study, in collaboration with the De Camilli group @pdc-lab.bsky.social, published in its final format! We resolved the structure of VPS13C and found that it adopts a lipid-transfer-incompetent conformation. We also show that CaM binds VPS13s and may help regulate their function.

Cryo-EM structure of soluble VPS13C suggests its regulation by a conformational switch and by calmodulin

VPS13C, whose dysfunction causes Parkinson’s disease, adopts a lipid-transfer-inactive conformation in the cytoplasm and relies on calmodulin for proper folding and localization to membrane surfaces.

cell.com

The Thermo Fisher situation keeps getting worse. We've now collected 450+ problematic images presented as verification data in TF's antibody catalog. This includes: 🖌️ Dozens more images with duplications or painting 🖨️ Hundreds of blots that all share the same background (behold slideshow below)

Happy to share our review of seipin as a lipid rheostat, not just a #lipiddroplet biogenesis factor. Its flexible structure, with cofactors and ligands, integrates metabolic cues at organelle contacts, coordinating lipid storage, membrane synthesis, and signaling. rupress.org/jcb/article/...

Seipin: A central lipid rheostat

Thiam and Carpentier review seipin as a conformationally dynamic lipid rheostat that steers lipid fate and preserves cellular metabolic balance.

rupress.org

🚨🚨Last day to register for the next annual meeting of Club Exocytose-Endocytose !!!🚨🚨 Invited speakers: M. Stroeber, G. D'Angelo and @christlet.bsky.social 📍 Centre Paul-Langevin, Aussois, France 📅 May 27–29, 2026 Get ready for exciting science!! Registration here exoendo.org/evenement/28...

28ème congrès du Club Exo Endo - Aussois (Savoie)

Speakers invités: Giovanni D’Angelo (EPFL, Lausanne, Suisse) Christophe Leterrier (INP, Marseille, France) Miriam Stoeber (University of Geneva, Genève, Suisse)

exoendo.org

I've been leading a big project at Methods in Enzymology over the past year or so: editing three back-to-back-to-back volumes of articles describing the latest advances in methods for studying lipids and membranes — thank you to the 50 #lipidtime luminaries who contributed the 51 chapters! Details 👇

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