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  • Author: McCormack EA
  • References

Author: McCormack EA


References 16 references


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  • Girvan P, et al. (2024) Nucleosome flipping drives kinetic proofreading and processivity by SWR1. Nature 636(8041):251-257 PMID:39506114
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  • Jalal ASB, et al. (2024) Stabilization of the hexasome intermediate during histone exchange by yeast SWR1 complex. Mol Cell 84(20):3871-3884.e9 PMID:39226902
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  • Ayala R, et al. (2018) Structure and regulation of the human INO80-nucleosome complex. Nature 556(7701):391-395 PMID:29643506
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  • Willhoft O, et al. (2018) Structure and dynamics of the yeast SWR1-nucleosome complex. Science 362(6411) PMID:30309918
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  • Lin CL, et al. (2017) Functional characterization and architecture of recombinant yeast SWR1 histone exchange complex. Nucleic Acids Res 45(12):7249-7260 PMID:28499038
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  • Willhoft O, et al. (2016) Synergy and antagonism in regulation of recombinant human INO80 chromatin remodeling complex. Nucleic Acids Res 44(17):8179-88 PMID:27257055
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  • Saravanan M, et al. (2012) Interactions between the nucleosome histone core and Arp8 in the INO80 chromatin remodeling complex. Proc Natl Acad Sci U S A 109(51):20883-8 PMID:23213201
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  • Dekker C, et al. (2011) The crystal structure of yeast CCT reveals intrinsic asymmetry of eukaryotic cytosolic chaperonins. EMBO J 30(15):3078-90 PMID:21701561
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  • Amit M, et al. (2010) Equivalent mutations in the eight subunits of the chaperonin CCT produce dramatically different cellular and gene expression phenotypes. J Mol Biol 401(3):532-43 PMID:20600117
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  • Altschuler GM, et al. (2009) A single amino acid residue is responsible for species-specific incompatibility between CCT and alpha-actin. FEBS Lett 583(4):782-6 PMID:19183552
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  • McCormack EA, et al. (2009) Yeast phosducin-like protein 2 acts as a stimulatory co-factor for the folding of actin by the chaperonin CCT via a ternary complex. J Mol Biol 391(1):192-206 PMID:19501098
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  • Dekker C, et al. (2008) The interaction network of the chaperonin CCT. EMBO J 27(13):1827-39 PMID:18511909
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  • Shimon L, et al. (2008) ATP-induced allostery in the eukaryotic chaperonin CCT is abolished by the mutation G345D in CCT4 that renders yeast temperature-sensitive for growth. J Mol Biol 377(2):469-77 PMID:18272176
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  • Pappenberger G, et al. (2006) Quantitative actin folding reactions using yeast CCT purified via an internal tag in the CCT3/gamma subunit. J Mol Biol 360(2):484-96 PMID:16762366
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  • Passmore LA, et al. (2003) Doc1 mediates the activity of the anaphase-promoting complex by contributing to substrate recognition. EMBO J 22(4):786-96 PMID:12574115
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  • Llorca O, et al. (1999) Eukaryotic type II chaperonin CCT interacts with actin through specific subunits. Nature 402(6762):693-6 PMID:10604479
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