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  • Author: Cohen RE
  • References

Author: Cohen RE


References 19 references


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  • Yakoub G, et al. (2023) Avidity-based biosensors for ubiquitylated PCNA reveal choreography of DNA damage bypass. Sci Adv 9(36):eadf3041 PMID:37672592
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  • Ndoja A, et al. (2014) Ubiquitin signals proteolysis-independent stripping of transcription factors. Mol Cell 53(6):893-903 PMID:24613342
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  • Nakasone MA, et al. (2013) Mixed-linkage ubiquitin chains send mixed messages. Structure 21(5):727-40 PMID:23562397
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  • Sims JJ, et al. (2012) Polyubiquitin-sensor proteins reveal localization and linkage-type dependence of cellular ubiquitin signaling. Nat Methods 9(3):303-9 PMID:22306808
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  • Samara NL, et al. (2010) Structural insights into the assembly and function of the SAGA deubiquitinating module. Science 328(5981):1025-9 PMID:20395473
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  • Carlile CM, et al. (2009) Synthesis of free and proliferating cell nuclear antigen-bound polyubiquitin chains by the RING E3 ubiquitin ligase Rad5. J Biol Chem 284(43):29326-34 PMID:19706603
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  • Sims JJ, et al. (2009) Avid interactions underlie the Lys63-linked polyubiquitin binding specificities observed for UBA domains. Nat Struct Mol Biol 16(8):883-9 PMID:19620964
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  • Yao T, et al. (2006) Proteasome recruitment and activation of the Uch37 deubiquitinating enzyme by Adrm1. Nat Cell Biol 8(9):994-1002 PMID:16906146
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  • Hu M, et al. (2005) Structure and mechanisms of the proteasome-associated deubiquitinating enzyme USP14. EMBO J 24(21):3747-56 PMID:16211010
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  • Pashkova N, et al. (2005) Myosin V attachment to cargo requires the tight association of two functional subdomains. J Cell Biol 168(3):359-64 PMID:15684027
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    • Reference supplement
  • Yao T and Cohen RE (2002) A cryptic protease couples deubiquitination and degradation by the proteasome. Nature 419(6905):403-7 PMID:12353037
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  • Johnston SC, et al. (1999) Structural basis for the specificity of ubiquitin C-terminal hydrolases. EMBO J 18(14):3877-87 PMID:10406793
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  • Sokolik CW and Cohen RE (1992) Ubiquitin conjugation to cytochromes c. Structure of the yeast iso-1 conjugate and possible recognition determinants. J Biol Chem 267(2):1067-71 PMID:1309759
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  • Sokolik CW and Cohen RE (1991) The structures of ubiquitin conjugates of yeast Iso-2-cytochrome c. J Biol Chem 266(14):9100-7 PMID:1851166
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  • Cohen RE, et al. (1982) Effects of mannoprotein mutations on Saccharomyces cerevisiae core oligosaccharide structure. J Biol Chem 257(10):5730-7 PMID:6802821
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  • Hashimoto C, et al. (1981) Carbohydrate chains on yeast carboxypeptidase Y are phosphorylated. Proc Natl Acad Sci U S A 78(4):2244-8 PMID:7017728
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  • Ballou L, et al. (1980) Saccharomyces cerevisiae mutants that make mannoproteins with a truncated carbohydrate outer chain. J Biol Chem 255(12):5986-91 PMID:6991499
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  • Cohen RE, et al. (1980) Saccharomyces cerevisiae mannoprotein mutants. Isolation of the mnn5 mutant and comparison with the mnn3 strain. J Biol Chem 255(16):7700-7 PMID:6995454
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  • Lehle L, et al. (1979) Carbohydrate structure of yeast invertase. Demonstration of a form with only core oligosaccharides and a form with completed polysaccharide chains. J Biol Chem 254(23):12209-18 PMID:115881
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    • PubMed
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