Interested in #organelles, #metabolism, #membranes, #enzymes, #cancer, #neurodegeneration 🙂
Side interests include #cats, #beers, #pastries 🙃
www.nature.com/articles/s41...
www.nature.com/articles/s41...
www.science.org/doi/10.1126/...
www.science.org/doi/10.1126/...
shorturl.at/B5XYD
shorturl.at/B5XYD
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@cri-utsw.bsky.social at UTSW this January!
We will explore how cells sense and respond to mechanical forces, focusing on membrane mechanics to reveal how tension and signaling work together to shape cell behavior.
@cri-utsw.bsky.social at UTSW this January!
We will explore how cells sense and respond to mechanical forces, focusing on membrane mechanics to reveal how tension and signaling work together to shape cell behavior.
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
I'm thrilled to share our new paper (Adriaenssens et al., Nat Cell Biol 2025).
This paper describes a new mechanism for the initiation of autophagosome biogenesis.
We found that this WIPI-ATG13-driven pathway is preferentially used by a group of transmembrane autophagy receptors.
I'm thrilled to share our new paper (Adriaenssens et al., Nat Cell Biol 2025).
This paper describes a new mechanism for the initiation of autophagosome biogenesis.
We found that this WIPI-ATG13-driven pathway is preferentially used by a group of transmembrane autophagy receptors.
We used predicted structures to gain insight into the evolution of metabolic proteins in yeast.
A bit more in this linked-in post (www.linkedin.com/posts/benjam...).
We used predicted structures to gain insight into the evolution of metabolic proteins in yeast.
A bit more in this linked-in post (www.linkedin.com/posts/benjam...).
Curious about how ATG9A maintains lysosomal homeostasis via PI4P? Check out the new work from my postdoc in @satooze.bsky.social lab.
Thrilled to see this finally published!
Special thanks to @ealmacellas.bsky.social
www.sciencedirect.com/science/arti...
Curious about how ATG9A maintains lysosomal homeostasis via PI4P? Check out the new work from my postdoc in @satooze.bsky.social lab.
Thrilled to see this finally published!
Special thanks to @ealmacellas.bsky.social
www.sciencedirect.com/science/arti...
Brief Skytorial!
1/9
Brief Skytorial!
1/9
full text available here 👉 rdcu.be/em0VG and thread 👇
full text available here 👉 rdcu.be/em0VG and thread 👇
We found that LRP10 promotes the efficient delivery of progranulin to lysosomes and that microglia are particularly sensitive to loss of LRP10.
We found that LRP10 promotes the efficient delivery of progranulin to lysosomes and that microglia are particularly sensitive to loss of LRP10.
In a Science study last year, researchers reported that a nitrogen-fixing organelle has been identified in a marine alga.
Learn more in this #SciencePerspective: scim.ag/49GjClc #ScienceMagArchives
In a Science study last year, researchers reported that a nitrogen-fixing organelle has been identified in a marine alga.
Learn more in this #SciencePerspective: scim.ag/49GjClc #ScienceMagArchives
@robzonculab.bsky.social @ucberkeleyofficial.bsky.social
www.embopress.org/doi/full/10....
It's my honor to work with amazing teammates! I really enjoy exploring mitochondrial protein import mechanism through cryo-ET!
#ProteinHomeostasis #Organelles #StructuralBiology #CryoET
It's my honor to work with amazing teammates! I really enjoy exploring mitochondrial protein import mechanism through cryo-ET!
Thus I would like to report our latest work describing microbial-independent deep assembly and screening, a method that goes from primers to mammalian cell assays in 1 day.
www.biorxiv.org/content/10.1...
Thus I would like to report our latest work describing microbial-independent deep assembly and screening, a method that goes from primers to mammalian cell assays in 1 day.
www.biorxiv.org/content/10.1...