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Published By Springer Nature

1552-4469, 1552-4450

Author(s):  
Mark A. Nakasone ◽  
Karolina A. Majorek ◽  
Mads Gabrielsen ◽  
Gary J. Sibbet ◽  
Brian O. Smith ◽  
...  

AbstractUbiquitin (Ub) chain types govern distinct biological processes. K48-linked polyUb chains target substrates for proteasomal degradation, but the mechanism of Ub chain synthesis remains elusive due to the transient nature of Ub handover. Here, we present the structure of a chemically trapped complex of the E2 UBE2K covalently linked to donor Ub and acceptor K48-linked di-Ub, primed for K48-linked Ub chain synthesis by a RING E3. The structure reveals the basis for acceptor Ub recognition by UBE2K active site residues and the C-terminal Ub-associated (UBA) domain, to impart K48-linked Ub specificity and catalysis. Furthermore, the structure unveils multiple Ub-binding surfaces on the UBA domain that allow distinct binding modes for K48- and K63-linked Ub chains. This multivalent Ub-binding feature serves to recruit UBE2K to ubiquitinated substrates to overcome weak acceptor Ub affinity and thereby promote chain elongation. These findings elucidate the mechanism of processive K48-linked polyUb chain formation by UBE2K.


Author(s):  
Zhenmei Xu ◽  
Tatsuya Ikuta ◽  
Kouki Kawakami ◽  
Ryoji Kise ◽  
Yu Qian ◽  
...  

Author(s):  
Gabriele Stankeviciute ◽  
Peijun Tang ◽  
Ben Ashley ◽  
Joshua D. Chamberlain ◽  
Matthew E. B. Hansen ◽  
...  

Author(s):  
Rosa Vincent ◽  
Tal Danino
Keyword(s):  
T Cells ◽  

Author(s):  
Thomas J. Gardner ◽  
J. Peter Lee ◽  
Christopher M. Bourne ◽  
Dinali Wijewarnasuriya ◽  
Nihar Kinarivala ◽  
...  

Author(s):  
Catherine S. McCaughey ◽  
Jeffrey A. van Santen ◽  
Justin J. J. van der Hooft ◽  
Marnix H. Medema ◽  
Roger G. Linington

Author(s):  
Andrew R. Conery ◽  
Jennifer L. Rocnik ◽  
Patrick Trojer
Keyword(s):  

Author(s):  
Zhehua Shao ◽  
Qingya Shen ◽  
Bingpeng Yao ◽  
Chunyou Mao ◽  
Li-Nan Chen ◽  
...  

AbstractBiased signaling of G protein-coupled receptors describes an ability of different ligands that preferentially activate an alternative downstream signaling pathway. In this work, we identified and characterized different N-terminal truncations of endogenous chemokine CCL15 as balanced or biased agonists targeting CCR1, and presented three cryogenic-electron microscopy structures of the CCR1–Gi complex in the ligand-free form or bound to different CCL15 truncations with a resolution of 2.6–2.9 Å, illustrating the structural basis of natural biased signaling that initiates an inflammation response. Complemented with pharmacological and computational studies, these structures revealed it was the conformational change of Tyr291 (Y2917.43) in CCR1 that triggered its polar network rearrangement in the orthosteric binding pocket and allosterically regulated the activation of β-arrestin signaling. Our structure of CCL15-bound CCR1 also exhibited a critical site for ligand binding distinct from many other chemokine–receptor complexes, providing new insights into the mode of chemokine recognition.


Author(s):  
Ieva Sutkeviciute ◽  
Ji Young Lee ◽  
Alex D. White ◽  
Christian Santa Maria ◽  
Karina A. Peña ◽  
...  

Author(s):  
Colin P. Tang ◽  
Owen Clark ◽  
John R. Ferrarone ◽  
Carl Campos ◽  
Alshad S. Lalani ◽  
...  

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