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Product References - E3 ligase
Boston Biochem's products have been used successfully in hundreds of UPP-related publications. We have listed our most recent references below to provide our customers with an exceptional resource for product use information. The references are organized to mirror our product divisions for easy location. Products referenced in each article are listed below in red. Please inquire to request archives as we have curated references back to 2003.
Cotto-Rios, X.M. et al. (2012) "Deubiquitinases as a signaling target of oxidative stress." Cell Rep 2(6): 1475–1484.
Hou, X. et al. (2012) "Mining and characterization of ubiquitin E3 ligases expressed in the mouse testis." BMC Genomics 13: 495.
Burchell, L. et al. (2012) "Small, N-terminal tags activate parkin e3 ubiquitin ligase activity by disrupting its autoinhibited conformation." PLoS ONE 7(4): e34748.
Johnson, B.N. et al. (2012) "The ubiquitin E3 ligase parkin regulates the proapoptotic function of Bax." Proc. Natl. Acad. Sci. U.S.A. 109(16): 6283–6288.
Schneider, S. et al. (2012) "Development of a homogeneous AlphaLISA ubiquitination assay using ubiquitin binding matrices as universal components for the detection of ubiquitinated proteins." Biochimica et biophysica acta. 2012 Apr 5.
Johnson, B.N. et al. (2012) "The ubiquitin E3 ligase parkin regulates the proapoptotic function of Bax." Proc. Natl. Acad. Sci. U.S.A. 109(16): 6283–6288.
Kalia, L.V., et al. (2011) “Ubiquitinylation of [alpha]-Synuclein by Carboxyl Terminus Hsp70-Interacting Protein (CHIP) Is Regulated by Bcl-2-Associated Athanogene 5 (BAG5).” PloS one, 6: e14695. doi:10.1371/journal.pone.0014695 .
Bosanac, I., et al. (2011) “Modulation of K11-Linkage Formation by Variable Loop Residues within UbcH5A.” Journal of Mol. Bio.: doi:10.1016/j.jmb.2011.03.011.* .
Shin, J., et al. (2011) “PARIS (ZNF746) Repression of PGC-1[alpha] Contributes to Neurodegeneration in Parkinson's Disease.” Cell, 144: 689-702.
Jin, X, et al. (2010) “An Atypical E3 Ligase Zinc Finger Protein 91 Stabilizes and Activates NF-B-inducing Kinase via Lys63-linked Ubiquitination.” J. Biol. Chem. 285: 30539-30547.
Kaneko, M., et al. (2010) “Loss of HRD1-Mediated Protein Degradation Causes Amyloid Precursor Protein Accumulation and Amyloid-[beta] Generation.” J. Neurosci., 3924 - 3932.
Chymkowitch, P., et al. (2010) "The phosphorylation of the androgen receptor by TFIIH directs the ubiquitin/proteasome process.” The EMBO Journal 30(3): 468–479.
Fu, W., et al. (2009) "MDM2 Acts Downstream of p53 as an E3 Ligase to Promote FOXO Ubiquitination and Degradation." J. Biol. Chem. 284: 13987-14000.
Siepe, D. and Jentsch, S. (2009) "Prolyl isomerase Pin1 acts as a switch to control the degree of substrate ubiquitylation.” Nature Cell Biology 11(8): 967–972.
Newton, K., et al. (2008) "Ubiquitin Chain Editing Revealed by Polyubiquitin Linkage-Specific Antibodies.” Cell 134(4): 668–678.
Hrecka, K., M. Gierszewska, et al. (2007). "Lentiviral Vpr usurps Cul4-DDB1[VprBP] E3 ubiquitin ligase to modulate cell cycle." PNAS 104(28): 11778-11783.
Fortier, J. M. and J. Kornbluth (2006). "NK Lytic-Associated Molecule, Involved in NK Cytotoxic Function, Is an E3 Ligase." J. Immunol. 176(11): 6454-6463.
Dai, M.-S., D. et al. (2006). "Regulation of the MDM2-p53 Pathway by Ribosomal Protein L11 Involves a Post-ubiquitination Mechanism." J. Biol. Chem. 281(34): 24304-24313.
Burstein E., et al. (2004) "A novel role for XIAP in copper homeostasis through regulation of MURR1." EMBO J. 23(1): 244-254.






