- Home
- About
- Products
- E1 Activating
- E2 Conjugating
- E3 Ligase
- Deconjugating
- Proteasome
- Ubiquitin
- All
- Ubiquitin and Ubiquitin Derivatives
- Ubiquitin Chains
- DUB-Resistant, Non-Hydrolyzable Chains
- NH Isopeptide-linked chains
- DCA Linked Chains
- K6-linked Chains (DCA)
- Agarose Bound K6-linked Chains (DCA)
- K11-linked Chains (DCA)
- Agarose Bound K11-linked Chains (DCA)
- K29-linked Chains (DCA)
- Agarose Bound K29-linked Chains (DCA)
- K33-linked Chains (DCA)
- Agarose Bound K33-linked Chains (DCA)
- K48-linked Chains (DCA)
- Agarose Bound K48-linked Chains (DCA)
- K63-linked Chains (DCA)
- Agarose Bound K63-linked Chains (DCA)
- K76-linked Chains (DCA)
- Agarose Bound K76-linked Chains (DCA)
- Ubiquitin Mutants
- Labeled Ubiquitin Proteins
- Antibodies, ELISAs and Kits
- SUMO
- NEDD8
- ISG15
- UFM1
- URM1
- Autophagy
- FAT10
- Inhibitors
- Antibodies
- Kits
- Buffers, Solutions, Standards
- Substrate Proteins
- Affinity Matrices / Proteins
- Fractions
- FUBI
- References
- Orders
- Contact
Product References - Substrate proteins
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.
Guglielmotto, M. et al. (2012) "Aβ 1-42-mediated down-regulation of Uch-L1 is dependent on NF-κB activation and impaired BACE1 lysosomal degradation." Aging cell.
Chung, D.-W.D. et al. (2012) "Characterization of the Ubiquitylating Components of the Human Malaria Parasite’s Protein Degradation Pathway." PLoS ONE 7(8): e43477.
Kanga, S. et al. (2012) "A deubiquitylating complex required for neosynthesis of a yeast mitochondrial ATP synthase subunit." PLoS ONE 7(6): e38071.
Hochrainer, K. et al. (2012) "Reperfusion rather than ischemia drives the formation of ubiquitin aggregates after middle cerebral artery occlusion." Stroke 43(8): 2229–2235.
Zhu, Y. et al. (2012) "Synthesis and inhibitory activities against colon cancer cell growth and proteasome of alkylresorcinols." J. Agric. Food Chem. 60(35): 8624–8631.
Neilsen, P.M. et al. (2012) "New 26S Proteasome Inhibitors with High Selectivity for Chymotrypsin-Like Activity and p53-Dependent Cytotoxicity." ACS Chem. Biol.
Blackburn C, Barrett C, Blank JL, et al. "Optimization of a series of dipeptides with a P3 β-neopentyl asparagine residue as non-covalent inhibitors of the chymotrypsin-like activity of human 20S proteasome." Med. Chem. Commun. 2012 May 30;3(6):710–719.
Henle, A.M. et al. (2012) "Enzymatic Discovery of a HER-2/neu Epitope That Generates Cross-Reactive T Cells." J. Immunol.
Carvalho, A.N. et al. (2012) "Ubiquitin-Proteasome System Impairment and MPTP-Induced Oxidative Stress in the Brain of C57BL/6 Wild-type and GSTP Knockout Mice." Mol. Neurobiol.
Lansdell, T.A. et al. (2012) "Non-competitive modulation of the proteasome by imidazoline scaffolds overcome bortezomib resistant and delay MM tumor growth in vivo." ACS Chem. Biol.
Rodriguez, K.A. et al. (2012) "Altered composition of liver proteasome assemblies contributes to enhanced proteasome activity in the exceptionally long-lived naked mole-rat." PLoS ONE 7(5): e35890.
Rodriguez, K.A. et al. (2012) "Altered composition of liver proteasome assemblies contributes to enhanced proteasome activity in the exceptionally long-lived naked mole-rat." PLoS ONE 7(5): e35890.
Rodriguez, K.A. et al. (2012) "Altered composition of liver proteasome assemblies contributes to enhanced proteasome activity in the exceptionally long-lived naked mole-rat." PLoS ONE 7(5): e35890.
Chou, Y.-W. et al. (2012) "Differential domain structure stability of the severe acute respiratory syndrome coronavirus papain-like protease." Arch. Biochem. Biophys. 520(2): 74–80.
Reverdy, C. et al. (2012) "Discovery of Specific Inhibitors of Human USP7/HAUSP Deubiquitinating Enzyme." Chem. Biol. 19(4): 467–477.
Galisson, F., et al. (2011) “A Novel Proteomics Approach to Identify SUMOylated Proteins and Their Modification Sites in Human Cells.” Molecular and Cellular Proteomics, 10: M110.004796.
Wu, T., et al. (2010) “UBE2S drives elongation of K11-linked ubiquitin chains by the Anaphase-Promoting Complex.” PNAS 107: 1355 - 1360.
Kim, H.T., et al. (2009) "S5a promotes protein degradation by blocking synthesis of non-degradable forked ubiquitin chains." EMBO J. 28: 1867-1877.
Gho, A.M., et al. (2008). "Components of the ubiquitin-proteasome pathway compete for surfaces on Rad23 family proteins." BMC Biochem. 9:4.
Yamada, M., J. Ohnishi, et al. (2006). "NARF, an emo-like Kinase (NLK)-associated Ring Finger Protein Regulates the Ubiquitylation and Degradation of T Cell Factor/Lymphoid Enhancer Factor (TCF/LEF)." J. Biol. Chem. 281(30): 20749-20760.






