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  1. 1.   The Degradation of Botulinum Neurotoxin Light Chains Using PROTACs
  2. Tsai,Yien Che; Kozar, Loren; Mawi, Zo P; Ichtchenko, Konstantin; Shoemaker, Charles B; McNutt, Patrick M; Weissman,Allan
  3. International Journal of Molecular Sciences. 2024, Jul 08; 25(13):
  1. 2.   SARS-CoV-2 papain-like protease (PLpro) plays multiple roles in regulating cellular proteins in the endoplasmic reticulum
  2. Yang,Mei; Mariano,Jennifer; Su, Rebecca; Smith, Christopher E; Das,Sudipto; Gill, Catherine; Andresson,Thorkell; Loncarek,Jadranka; Tsai,Yien Che; Weissman,Allan
  3. The Journal of Biological Chemistry. 2023, Dec; 299(12): 105346.
  1. 3.   Structure-guided bifunctional molecules hit a DEUBAD-lacking hRpn13 species upregulated in multiple myeloma
  2. Lu, Xiuxiu; Sabbasani, Venkata R.; Osei-Amponsa, Vasty; Evans, Christine N.; King, Julianna C.; Tarasov, Sergey G.; Dyba, Marzena; Das, Sudipto; Chan, King C.; Schwieters, Charles D.; Choudhari, Sulbha; Fromont, Caroline; Zhao, Yongmei; Tran, Bao; Chen, Xiang; Matsuo, Hiroshi; Andresson, Thorkell; Chari, Raj; Swenson, Rolf E.; Tarasova, Nadya I.; Walters, Kylie J.
  3. Nature Communications. 2021, Dec 16; 12(1):
  1. 4.   Cryo-EM Reveals Unanchored M1-Ubiquitin Chain Binding at hRpn11 of the 26S Proteasome
  2. Chen,Xiang; Dorris, Zachary; Shi,Dan; Huang, Rick K; Khant,Htet; Fox,Tara; De Val Alda,Natalia; Williams, Dewight; Zhang,Ping; Walters,Kylie
  3. Structure (London, England : 1993). 2020, NOV 3; 28(11): 1206-+.
  1. 5.   Structure of E3 ligase E6AP with a proteasome-binding site provided by substrate receptor hRpn10
  2. Buel,Gwen; Chen,Xiang; Chari,Raj; O'Neill, Maura J; Ebelle, Danielle L; Jenkins, Conor; Sridharan, Vinidhra; Tarasov,Sergey; Tarasova,Nadya; Andresson,Thorkell; Walters,Kylie
  3. Nature communications. 2020, Mar 10; 11(1): 1291.
  1. 6.   A High Affinity hRpn2-Derived Peptide That Displaces Human Rpn13 from Proteasome in 293T Cells
  2. Lu, X. X.; Liu, F.; Durham, S. E.; Tarasov, S. G.; Walters, K. J.
  3. Plos One. 2015, Oct; 10(10):
  1. 7.   The predator becomes the prey: regulating the ubiquitin system by ubiquitylation and degradation
  2. Weissman, A. M.; Shabek, N.; Ciechanover, A.
  3. Nature Reviews Molecular Cell Biology. 2011, Sep; 12(9): 605-620.
  1. 8.   Transgenic rescue of ataxia mice reveals a male-specific sterility defect
  2. Crimmins, S.; Sutovsky, M.; Chen, P. C.; Huffman, A.; Wheeler, C.; Swing, D. A.; Roth, K.; Wilson, J.; Sutovsky, P.; Wilson, S.
  3. Developmental Biology. 2009 325(1): 33-42.
  1. 9.   A conserved catalytic residue in the ubiquitin-conjugating enzyme family
  2. Wu, P. Y.; Hanlon, M.; Eddins, M.; Tsui, C.; Rogers, R. S.; Jensen, J. P.; Matunis, M. J.; Weissman, A. M.; Wolberger, C. P.; Pickart, C. M.
  3. Embo Journal. 2003 22(19): 5241-5250.
  1. 10.   Isolation and characterization of the mouse ubiquitin-specific protease Usp15
  2. Angelats, C.; Wang, X. W.; Jermiin, L. S.; Copeland, N. G.; Jenkins, N. A.; Baker, R. T.
  3. Mammalian Genome. 2003 14(1): 31-46.
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