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Dawafuti Sherpa

@dawafutisherpa.bsky.social
83 followers 186 following 4 posts

Postdoctoral Research Fellow @Harvard Medical School | PhD @Max Planck Institute of Biochemistry | Biochemistry, Cell biology and Structural biology

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Reposted by Dawafuti Sherpa
bioRxiv Biochemistry @biorxiv-biochem.bsky.social · 16/09/2026
Multimodal substrate recruitment enables CTLH-MKLN1 E3 ligase to target N-, C-, and internal degrons www.biorxiv.org/content/10.64898/20…
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Reposted by Dawafuti Sherpa
Harvard Med Cell Biology @harvardcellbio.bsky.social · 29/07/2026
Work from Tao Fu in @harperlabhms.bsky.social reports DNAJC13 structure, revealing both a dimeric architecture & binding of InsP6 to dual PH domains. Both features promote recycling endosome functions such as melanin production @asapresearch.parkinsonsroadmap.org www.biorxiv.org/content/10.6...
biorxiv.org
Structural Mechanisms of DNAJC13 Dimeric Assembly and InsP6 binding in Recycling Endosome Regulation
The balance of plasma membrane protein degradation and recycling during endocytosis is regulated, in part, by the large J-domain-containing protein DNAJC13/RME-8 and WASH complexes, which function tog...
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Reposted by Dawafuti Sherpa
Harvard Med Cell Biology @harvardcellbio.bsky.social · 30/05/2026
Collaboration between Schulman lab @mpi-biochem, @harperlabhms.bsky.social & Hanna Lab @BWH/HMS reveals structural basis for Parkinson's risk genes FBXO7 & PI31/PSMF1 interaction with each other & with the proteasome core particle. @asapresearch.parkinsonsroadmap.org www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by Dawafuti Sherpa
Alan Brown @alanbrownhms.bsky.social · 22/05/2026
One, perhaps two, of our postdocs are moving on to faculty positions this year (more news soon!). While they're truly irreplaceable, it does mean that we have openings for new members to join our team studying #cilia. If interested, please apply: academicpositions.harvard.edu/postings/15526
Advert for postdoctoral positions at Harvard Medical School studying cilia
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Reposted by Dawafuti Sherpa
Susan Shao @sshaolab.bsky.social · 03/04/2026
Abstract deadline extended to April 20 for the FASEB #UbiqSRC, colocated with the #ProtFoldSRC, June 1-4 in Louisville! Register for one of the ~20 talk slots throughout the main meeting and pre-meeting career forum! events.faseb.org/event/Ubiqui...
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Reposted by Dawafuti Sherpa
IMPRS for Living Matter @imprs-lm.bsky.social · 23/03/2026
Excited to decode the intricate language of ubiquitin chains and unravel their role in protein degradation? 🧬🔬 👉 APPLY NOW to join the lab of Dr. Leo Kiss @leokiss.bsky.social @imprs-lm.bsky.social. #CellularBiochemistry #Ubiquitin #Proteostasis #ProteinDegradation
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Reposted by Dawafuti Sherpa
Jakob Farnung @jakobfarnung.bsky.social · 18/03/2026
The E3 ubiquitin ligase mechanism specifying target-directed microRNA degradation (TDMD) is now published! 🎉🍾 We, @bartellab.bsky.social and Schulman lab, describe how 2-RNA factors control protein degradation by recruiting an E3 ligase. @mpibiochem.bsky.social www.nature.com/articles/s41...
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Dawafuti Sherpa @dawafutisherpa.bsky.social · 11/03/2026
Excited to announce that FASEB Ignite Career Forum 2026 (preceding FASEB Ubiquitin Mechanisms, Functions, and Therapeutics & Protein Folding in the Cell) is open for registration! Abstract deadline - April 6, 2026 For more details - events.faseb.org/event/Protei... events.faseb.org/event/Ubiqui...
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Reposted by Dawafuti Sherpa
Alina Thielen @alinathielen.bsky.social · 13/01/2026
New year, new preprint! 🎊 We are excited to share our recent work on #E3 ligase regulation in #metabolism! www.biorxiv.org/content/10.6... #ubiquitin #targetedproteindegradation #chemicalbiology 1/6
biorxiv.org
A CK2-FBXW11 kinase-E3 ubiquitin ligase cascade is a metabolic sensor regulating Tryptophan 2,3-dioxygenase stability
Small molecules toggling the ubiquitin-proteasome system (UPS) are powerful regulators of protein degradation. Yet, mechanistic knowledge of how endogenous ligands gate UPS decisions remains rudimentary. Here, we define control of UPS access to Tryptophan-2,3-dioxygenase (TDO2), which converts the essential amino acid tryptophan (Trp) to N-formylkynurenine. When Trp concentrations are limiting, TDO2 is degraded to avert tryptophanemia. Using CRISPRi screening and biochemistry, we identify a CK2-FBXW11 kinase-E3 ligase cascade that generates and recognizes tandem TDO2 phosphodegrons when not protected by Trp. Trp binding to an exosite safeguards TDO2 from phosphorylation-dependent ubiquitylation. Effects of Trp analogs on CK2-FBXW11-dependent ubiquitylation indicated that the indole, amino, and carboxylate groups are necessary for substrate shielding. Cryo-EM reveals how these moieties order a region proximal to the phosphodegrons; without Trp, this segment is flexible, enabling phosphorylation-coupled ubiquitylation. Overall, our data uncovered an endogenous small molecule allosterically stabilizing its own metabolizing enzyme through protection from a phosphorylation-ubiquitylation cascade. ### Competing Interest Statement B.A.S. is a member of the scientific advisory boards of Proxygen and Lyterian. The other authors declare no competing interests. Max Planck Society, https://ror.org/01hhn8329 European Union, ERC AdvG, UPSmeetMet, 101098161 to BAS Boehringer Ingelheim Fonds, https://ror.org/00dkye506
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Reposted by Dawafuti Sherpa
Jakob Farnung @jakobfarnung.bsky.social · 06/01/2026
When RNA Degradation 🤝 meets 🤝 Protein Degradation! tinyurl.com/E3TDMD In a collaboration of @bartellab.bsky.social and Schulman lab, we show that, in target-directed microRNA degradation (TDMD), 2-RNA-factors recruit an E3 ligase and induce the degradation of not only a protein but also RNA (1/5).
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Reposted by Dawafuti Sherpa
Stirling Churchman @stirlingchurchman.bsky.social · 03/12/2025
Oxidative phosphorylation complexes contain subunits encoded by both the nuclear and mitochondrial genomes. How do cells coordinate the synthesis and assembly of these complexes at the inner membrane? We teamed up with Martin Ott (@mitolab.bsky.social) to address this in two recent papers.
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Reposted by Dawafuti Sherpa
Samuel Maiwald @samuelmaiwald.bsky.social · 26/05/2025
Excited to share our latest study on how K29/K48-branched #ubiquitin chains are forged by the #E3 ligase TRIP12, and how this suggests a consensus mechanism for chain formation by HECT E3s! @natsmb.nature.com 1/7 www.nature.com/articles/s41...
nature.com
TRIP12 structures reveal HECT E3 formation of K29 linkages and branched ubiquitin chains - Nature Structural & Molecular Biology
Using biochemistry, chemical biology, and cryo-EM, Maiwald et al. elucidate how TRIP12 forms K29 linkages and K29/K48-linked branched ubiquitin chains, revealing a mechanism for polyubiquitylation sha...
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Reposted by Dawafuti Sherpa
Susan Shao @sshaolab.bsky.social · 23/04/2025
Cup? Platter? Stained glass? Our imaginations were inspired (even during uncertain times!) by these beautiful molecular complexes: the Erlin and prohibitin complexes implicated in quality control at the ER and mitochondria, respectively. Check them out here: www.biorxiv.org/content/10.1...
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