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Cbl-b interacts with ubiquitinated proteins; differential functions of the UBA domains of c-Cbl and Cbl-bDAVIES, Gareth C; ETTENBERG, Seth A; COATS, Ashley O et al.Oncogene (Basingstoke). 2004, Vol 23, Num 42, pp 7104-7115, issn 0950-9232, 12 p.Article

Lens fibers have a fully functional ubiquitin-proteasome pathwayPEREIRA, Paulo; FU SHANG; HOBBS, Marisa et al.Experimental eye research. 2003, Vol 76, Num 5, pp 623-631, issn 0014-4835, 9 p.Article

A ubiquitin and ubiquitin-like protein spectral librarySRIKUMAR, Tharan; JERAM, Stanley M; LAM, Henry et al.Proteomics (Weinheim. Print). 2010, Vol 10, Num 2, pp 337-342, issn 1615-9853, 6 p.Article

Alteration of α-spectrin ubiquitination after hemorrhagic shockCAPRIO, Kimberly; CONDON, Michael R; DEITCH, Edward A et al.The American journal of surgery. 2008, Vol 196, Num 5, pp 663-669, issn 0002-9610, 7 p.Article

Effect of heart failure on the regulation of skeletal muscle protein synthesis, breakdown, and apoptosisPERSINGER, Rebecca; JANSSEN-HEININGER, Yvonne; WING, Simon S et al.American journal of physiology. Endocrinology and metabolism. 2003, Vol 47, Num 5, pp E1001-E1008, issn 0193-1849Article

Apoptosis in Schwann cell cultures is closely interrelated with the activity of the ubiquitin-proteasome proteolytic pathwayPASQUINI, L. A; MORENO, M. Besio; LOPEZ SALON, M et al.Neurochemical research. 2002, Vol 27, Num 11, pp 1401-1419, issn 0364-3190, 19 p.Article

The E3 Ubiquitin Ligase Activity Associated with the Adenoviral E1B-55K―E4orf6 Complex Does Not Require CRM1-Dependent ExportSCHMID, Melanie; KINDSMÜLLER, Kathrin; WIMMER, Peter et al.Journal of virology. 2011, Vol 85, Num 14, pp 7081-7094, issn 0022-538X, 14 p.Article

Proteomics analyses of microvesicles released by Drosophila Kc167 and S2 cellsKOPPEN, Tim; WECKMANN, Andreas; MÜLLER, Stefan et al.Proteomics (Weinheim. Print). 2011, Vol 11, Num 22, pp 4397-4410, issn 1615-9853, 14 p.Article

USP19-deubiquitinating enzyme regulates levels of major myofibrillar proteins in L6 muscle cellsSUNDARAM, Priyanka; ZHIYU PANG; MIAO MIAO et al.American journal of physiology. Endocrinology and metabolism. 2009, Vol 60, Num 6, issn 0193-1849, E1283-E1290Article

Antizymel mediates AURKAIT1-dependent degradation of aurora-ALIM, S. K; GOPALAN, G.Oncogene (Basingstoke). 2007, Vol 26, Num 46, pp 6593-6603, issn 0950-9232, 11 p.Article

Large-scale analysis of the human ubiquitin-related proteomeMATSUMOTO, Masaki; HATAKEYAMA, Shigetsugu; QYAMADA, Koji et al.Proteomics (Weinheim. Print). 2005, Vol 5, Num 16, pp 4145-4151, issn 1615-9853, 7 p.Article

Ubiquitin ligation without a ligaseHOCHSTRASSER, Mark.Developmental cell. 2007, Vol 13, Num 1, pp 4-6, issn 1534-5807, 3 p.Article

Degradation of tob1 mediated by SCFSkp2-dependent ubiquitinationHIRAMATSU, Yoshihiro; KITAGAWA, Kyoko; KONNO, Hiroyuki et al.Cancer research (Baltimore). 2006, Vol 66, Num 17, pp 8477-8483, issn 0008-5472, 7 p.Article

SCF-mediated protein degradation and cell cycle controlANG, Xiaolu L; HARPER, J. Wade.Oncogene (Basingstoke). 2005, Vol 24, Num 17, pp 2860-2870, issn 0950-9232, 11 p.Article

The ubiquitin-activating enzyme (E1) of the early-branching eukaryote Giardia intestinalis shows unusual proteolytic modifications and play important roles during encystationNINO, Carlos A; PRUCCA, Cesar G; CHAPARRO, Jenny et al.Acta tropica. 2012, Vol 123, Num 1, pp 39-46, issn 0001-706X, 8 p.Article

Ubiquitin ligases in T cell activation and autoimmunityJIAN ZHANG.Clinical immunology (Orlando, Fla. Print). 2004, Vol 111, Num 3, pp 234-240, issn 1521-6616, 7 p.Article

Protein ubiquitination involving an E1-E2-E3 enzyme ubiquitin thioester cascadeSCHEFFNER, M; NUBER, U; HUIBREGTSE, J. M et al.Nature (London). 1995, Vol 373, Num 6509, pp 81-83, issn 0028-0836Article

The Ubiquitin Ligase Siah2 Regulates PPARγ Activity in AdipocytesKILROY, Gail; KIRK-BALLARD, Heather; CARTER, Lauren E et al.Endocrinology (Philadelphia). 2012, Vol 153, Num 3, pp 1206-1218, issn 0013-7227, 13 p.Article

Bacteria and the ubiquitin pathwayMUNRO, Patrick; FLATAU, Glues; LEMICHEZ, Emmanuel et al.Current opinion in microbiology. 2007, Vol 10, Num 1, pp 39-46, issn 1369-5274, 8 p.Article

Synthesis and characterization of ubiquitin ethyl ester, a new substrate for ubiquitin carboxyl-terminal hydrolaseWILKINSON, K. D; COX, M. J; MAYER, A. N et al.Biochemistry (Easton). 1986, Vol 25, Num 21, pp 6644-6649, issn 0006-2960Article

SUMO-1 Overexpression Increases RbAp46 Protein Stability and Suppresses Cell GrowthGIRI, Raghavaraju; YEH, Hsuan-Heng; WU, Chin-Han et al.Anticancer research. 2008, Vol 28, Num 6A, pp 3749-3756, issn 0250-7005, 8 p.Article

Dual E1 activation systems for ubiquitin differentially regulate E2 enzyme chargingJIANPING JIN; XUE LI; GYGI, Steven P et al.Nature (London). 2007, Vol 447, Num 7148, pp 1135-1138, issn 0028-0836, 4 p.Article

An enzyme with ubiquitin carboxy-terminal esterase activity from reticulocytesROSE, I. A; WARMS, J. V. B.Biochemistry (Easton). 1983, Vol 22, Num 18, pp 4234-4237, issn 0006-2960Article

Rac1 est la cible de l'activité E3 ubiquitine-ligase du suppresseur de tumeur HACE1 = The tumor suppressor HACE1 targets Racl to ubiquitin-mediated proteasomal degradationGACON, Gérard; METTOUCHI, Amel; LEMICHEZ, Emmanuel et al.MS. Médecine sciences. 2012, Vol 28, Num 1, pp 39-41, issn 0767-0974, 3 p.Article

Regulation of DNA damage response pathways by the cullin-RING ubiquitin ligasesHANNAH, Jeffrey; PENGBO ZHOU.DNA repair. 2009, Vol 8, Num 4, pp 536-543, issn 1568-7864, 8 p.Article

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