Nature Chemical Biology

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Snapshots and ensembles of BTK and cIAP1 protein degrader ternary complexes
Nature Chemical Biology - Tập 17 Số 2 - Trang 152-160 - 2021
James Schiemer, Reto Horst, Yilin Meng, Justin I. Montgomery, Yingrong Xu, Xidong Feng, Kris A. Borzilleri, Daniel P. Uccello, Stefan France, Stephen Brown, Ye Che, Matthew F. Brown, Matthew M. Hayward, A. Gilbert, Mark C. Noe, Matthew F. Calabrese
Convergent evolution of bacterial ceramide synthesis
Nature Chemical Biology - Tập 18 - Trang 305-312 - 2021
Gabriele Stankeviciute, Peijun Tang, Ben Ashley, Joshua D. Chamberlain, Matthew E. B. Hansen, Aimiyah Coleman, Rachel D’Emilia, Larina Fu, Eric C. Mohan, Hung Nguyen, Ziqiang Guan, Dominic J. Campopiano, Eric A. Klein
The bacterial domain produces numerous types of sphingolipids with various physiological functions. In the human microbiome, commensal and pathogenic bacteria use these lipids to modulate the host inflammatory system. Despite their growing importance, their biosynthetic pathway remains undefined since several key eukaryotic ceramide synthesis enzymes have no bacterial homolog. Here we used genomic and biochemical approaches to identify six proteins comprising the complete pathway for bacterial ceramide synthesis. Bioinformatic analyses revealed the widespread potential for bacterial ceramide synthesis leading to our discovery of a Gram-positive species that produces ceramides. Biochemical evidence demonstrated that the bacterial pathway operates in a different order from that in eukaryotes. Furthermore, phylogenetic analyses support the hypothesis that the bacterial and eukaryotic ceramide pathways evolved independently. Elucidation of the bacterial ceramide biosynthetic pathway reveals that it likely evolved independently from the eukaryotic pathway, as bacteria lack homologs for many of the eukaryotic enzymes and the reactions occur in a different order.
Novel targets for Huntington's disease in an mTOR-independent autophagy pathway
Nature Chemical Biology - Tập 4 Số 5 - Trang 295-305 - 2008
Andrea Williams, Sovan Sarkar, Paul A. Cuddon, Evangelia K. Ttofi, Shinji Saiki, Farah H. Siddiqi, Luca Jahreiss, Angeleen Fleming, Dean C. Pask, Paul Goldsmith, Cahir J. O’Kane, R. Andres Floto, David C. Rubinsztein
Rational design of proteins that exchange on functional timescales
Nature Chemical Biology - Tập 13 Số 12 - Trang 1280-1285 - 2017
James A. Davey, Adam M. Damry, Natalie K. Goto, Roberto A. Chica
Computational design of G Protein-Coupled Receptor allosteric signal transductions
Nature Chemical Biology - Tập 16 Số 1 - Trang 77-86 - 2020
Kuang-Yui Michael Chen, Dániel Kéri, Patrick Barth
Bottom-up de novo design of functional proteins with complex structural features
Nature Chemical Biology - Tập 17 Số 4 - Trang 492-500 - 2021
Che Yang, Fabian Sesterhenn, Jaume Bonet, Eva A. van Aalen, Leo Scheller, Luciano A. Abriata, Johannes Cramer, Xiaolin Wen, Stéphane Rosset, Sandrine Georgeon, Theodore S. Jardetzky, Thomas Krey, Martin Fussenegger, Maarten Merkx, Bruno E. Correia
A topological and conformational stability alphabet for multipass membrane proteins
Nature Chemical Biology - Tập 12 Số 3 - Trang 167-173 - 2016
Xiang Feng, Patrick Barth
Protein lysine methyltransferase G9a acts on non-histone targets
Nature Chemical Biology - Tập 4 Số 6 - Trang 344-346 - 2008
Philipp Rathert, Arunkumar Dhayalan, Marie Murakami, Xing Zhang, Raluca Tamas, Renata Z. Jurkowska, Yasuhiko Komatsu, Yoichi Shinkai, Xiaodong Cheng, Albert Jeltsch
Capture and release of alkyne-derivatized glycerophospholipids using cobalt chemistry
Nature Chemical Biology - Tập 6 Số 3 - Trang 205-207 - 2010
Stephen Milne, Keri A. Tallman, Remigiusz A. Serwa, Carol A. Rouzer, Michelle D. Armstrong, Lawrence J. Marnett, Charles M. Lukehart, Ned A. Porter, H. Alex Brown
Fatty acylation of Wnt proteins
Nature Chemical Biology - Tập 12 Số 2 - Trang 60-69 - 2016
Aaron H. Nile, Rami N. Hannoush
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