Coskun Lipid Cellar @ ZML Dresden
@lipid.bsky.social
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Membrane lipids in health and disease, Structure Bio, Cell signaling, Cellular Metabolism
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Reposted by Coskun Lipid Cellar @ ZML Dresden
Registration open: 77. Mosbacher Kolloquium "More than lipidic barriers - New horizons in membrane biology" from March 25-28, 2026
lnkd.in/dgsW4c3
Scientific Organizers: Britta Brügger, Robert Ernst, André Nadler, Christian Ungermann
Early registration & poster abstracts until January 31, 2026
lnkd.in/dgsW4c3
Scientific Organizers: Britta Brügger, Robert Ernst, André Nadler, Christian Ungermann
Early registration & poster abstracts until January 31, 2026
Dirk Görlich receives the prestigious #LaskerAward 2025! Congratulations!🍾
@laskerfdn.bsky.social honors him and Steven McKnight for discoveries exposing the structures and functions of protein sequences of low complexity.
Read all about Görlich's research here 👉 www.mpinat.mpg.de/5111108/pr_2...
@laskerfdn.bsky.social honors him and Steven McKnight for discoveries exposing the structures and functions of protein sequences of low complexity.
Read all about Görlich's research here 👉 www.mpinat.mpg.de/5111108/pr_2...
Reposted by Coskun Lipid Cellar @ ZML Dresden
🔥 Job alert! We are looking for an enthusiastic PhD candidate in the new Chemical Glycobiology Lab at @tudresden.bsky.social! Master in Chem or similar, experience in organic chem including chemoenzymatic, and most importantly: enthusiasm!
Deadline 8th July:
www.verw.tu-dresden.de/StellAus/ste...
Deadline 8th July:
www.verw.tu-dresden.de/StellAus/ste...
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Reposted by Coskun Lipid Cellar @ ZML Dresden
Very special feelings to announce this one... A project that started like 10 years ago is reaching the finish line, ready to shine. In a dream-team with @beckmannlab.bsky.social we solved the long-chased structure of the active membrane protein insertase SecYEG-YidC
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
Substrate-induced assembly and functional mechanism of the bacterial membrane protein insertase SecYEG-YidC
The universally conserved Sec translocon and the YidC/Oxa1-type insertases mediate biogenesis of alpha-helical membrane proteins, but the molecular basis of their cooperation has remained disputed over decades. A recent discovery of a multi-subunit insertase in eukaryotes has raised the question about the architecture of the putative bacterial ortholog SecYEG-YidC and its functional mechanism. Here, we combine cryogenic electron microscopy with cell-free protein synthesis in nanodiscs to visualize biogenesis of the polytopic membrane protein NuoK, the subunit K of NADH-quinone oxidoreductase, that requires both SecYEG and YidC for insertion. We demonstrate that YidC is recruited to the back of the translocon at the late stage of the substrate insertion, in resemblance to the eukaryotic system, and in vivo experiments indicate that the complex assembly is vital for the cells. The nascent chain does not utilize the lateral gate of SecYEG, but enters the lipid membrane at the SecYE-YidC interface, with YidC being the primary insertase. SecYEG-YidC complex promotes folding of the nascent helices at the interface prior their insertion, so the examined cellular pathway follows the fundamental thermodynamic principles of membrane protein folding. Our data provide the first detailed insight on the elusive insertase machinery in the physiologically relevant environment, highlight the importance of the nascent chain for its assembly, and prove the evolutionary conservation of the gate-independent insertion route. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, https://ror.org/018mejw64, Ke1879/3, 267205415 (CRC 1208) European Research Council, https://ror.org/0472cxd90, CRYOTRANSLATION
www.biorxiv.org