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  1. 1.   Mechanism of Viral Glycoprotein Targeting by Membrane-Associated RING-CH Proteins
  2. Lun, Cheng Man; Waheed,Abdul; Majadly, Alhlam; Powell, Nicole; Freed, Eric O.
  3. mBio. 2021, Mar 16; 12(2):
  1. 2.   CENP-A overexpression promotes aneuploidy with karyotypic heterogeneity
  2. Shrestha, Roshan L.; Rossi, Austin; Wangsa, Darawalee; Hogan, Ann K.; Zaldana, Kimberly S.; Suva, Evelyn; Chung, Yang Jo; Sanders,Chelsea; Difilippantonio,Simone; Karpova, Tatiana S.; Karim,Baktiar; Foltz, Daniel R.; Fachinetti, Daniele; Aplan, Peter D.; Ried, Thomas; Basrai, Munira A.
  3. The Journal of Cell Biology. 2021, Feb 23; 220(4):
  1. 3.   Promoterless Transposon Mutagenesis Drives Solid Cancers via Tumor Suppressor Inactivation
  2. Aiderus, Aziz; Contreras-Sandoval, Ana M; Meshey, Amanda L; Newberg, Justin Y; Ward, Jerrold M; Swing,Debbie; Copeland, Neal G; Jenkins, Nancy A; Mann, Karen M; Mann, Michael B
  3. Cancers. 2021, Jan 09; 13(2):
  1. 4.   A terminal alpha 3-galactose modification regulates an E3 ubiquitin ligase subunit in Toxoplasma gondii
  2. Mandalasi, Msano; Kim, Hyun W.; Thieker, David; Sheikh, M. Osman; Gas-Pascual, Elisabet; Rahman,Kazi; Zhao, Peng; Daniel, Nitin G.; van der Wel, Hanke; Ichikawa, H. Travis; Glushka, John N.; Wells, Lance; Woods, Robert J.; Wood, Zachary A.; West, Christopher M.
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2020, JUL 3; 295(27): 9223-9243.
  1. 5.   Structural basis for DNA damage-induced phosphoregulation of MDM2 RING domain
  2. Magnussen, Helge M.; Ahmed, Syed F.; Sibbet, Gary J.; Hristova, Ventzislava A.; Nomura, Koji; Hock, Andreas K.; Archibald, Lewis J.; Jamieson, Andrew G.; Fushman, David; Vousden, Karen H.; Weissman, Allan M.; Huang, Danny T.
  3. Nature communications. 2020, Apr 29; 11(1):
  1. 6.   A protein quality control pathway at the mitochondrial outer membrane
  2. Metzger,Meredith; Scales, Jessica L; Dunklebarger, Mitchell F; Loncarek,Jadranka; Weissman,Allan
  3. eLife. 2020, Mar 02; 9
  1. 7.   Loss-of-function CARD8 mutation causes NLRP3 inflammasome activation and Crohn's disease
  2. Mao, Liming; Kitani, Atsushi; Similuk, Morgan; Oler, Andrew J.; Albenberg, Lindsey; Kelsen, Judith; Aktay, Atiye; Quezado, Martha; Yao, Michael; Montgomery-Recht, Kim; Fuss, Ivan J.; Strober, Warren
  3. Journal of Clinical Investigation. 2018, May 01; 128(5): 1793-1806.
  1. 8.   Characterization of a cytoplasmic glucosyltransferase that extends the core trisaccharide of the Toxoplasma Skp1 E3 ubiquitin ligase subunit
  2. Rahman, Kazi; Mandalasi, Msano; Zhao, Peng; Sheikh, M. Osman; Taujale, Rahil; Kim, Hyun W.; van der Wel, Hanke; Matta, Khushi; Kannan, Natarajan; Glushka, John N.; Wells, Lance; West, Christopher M.
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2017, NOV 10; 292(45): 18644-18659.
  1. 10.   Molecular Dynamics Reveal the Essential Role of Linker Motions in the Function of Cullin-RING E3 Ligases
  2. Liu, J.; Nussinov, R.
  3. Journal of Molecular Biology. 2010, Mar; 396(5): 1508-1523.
  1. 11.   APOBEC3G expression is dysregulated in primary HIV-1 infection and polymorphic variants influence CD4+ T-cell counts and plasma viral load
  2. Reddy, K.; Winkler, C. A.; Werner, L.; Mlisana, K.; Karim, S. S. A.; Ndung'u, T.; Team, C. A. I. S.
  3. Aids. 2010, Jan; 24(2): 195-204.
  1. 12.   Polymorphisms of CUL5 are associated with CD4(+) T cell loss in HIV-1 infected individuals
  2. An, P.; Duggal, P.; Wang, L. H.; O'Brien, S. J.; Donfield, S.; Goedert, J. J.; Phair, J.; Buchbinder, S.; Kirk, G. D.; Winkler, C. A.
  3. Plos Genetics. 2007, Jan; 3(1):
  1. 13.   Transcriptional coregulator SNURF (RNF4) possesses ubiquitin E3 ligase activity
  2. Hakli, M.; Lorick, K. L.; Weissman, A. M.; Janne, O. A.; Palvimo, J. J.
  3. Febs Letters. 2004 560(1-3): 56-62.
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