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  • Author: Houry WA
  • References

Author: Houry WA


References 24 references


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  • Antonio LM, et al. (2023) Unveiling the Role of Sorghum RPAP3 in the Function of R2TP Complex: Insights into Protein Assembly in Plants. Plants (Basel) 12(16) PMID:37631136
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  • Kumar A, et al. (2018) Computational Analysis of the Chaperone Interaction Networks. Methods Mol Biol 1709:275-291 PMID:29177666
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  • Rizzolo K, et al. (2018) Systems analysis of the genetic interaction network of yeast molecular chaperones. Mol Omics 14(2):82-94 PMID:29659649
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  • Rizzolo K, et al. (2017) Features of the Chaperone Cellular Network Revealed through Systematic Interaction Mapping. Cell Rep 20(11):2735-2748 PMID:28903051
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  • Ewens CA, et al. (2016) Architecture and Nucleotide-Dependent Conformational Changes of the Rvb1-Rvb2 AAA+ Complex Revealed by Cryoelectron Microscopy. Structure 24(5):657-666 PMID:27112599
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  • Jeganathan A, et al. (2015) Yeast rvb1 and rvb2 proteins oligomerize as a conformationally variable dodecamer with low frequency. J Mol Biol 427(10):1875-86 PMID:25636407
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  • Kakihara Y, et al. (2014) Nutritional status modulates box C/D snoRNP biogenesis by regulated subcellular relocalization of the R2TP complex. Genome Biol 15(7):404 PMID:25060708
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  • Makhnevych T and Houry WA (2013) The control of spindle length by Hsp70 and Hsp110 molecular chaperones. FEBS Lett 587(8):1067-72 PMID:23434584
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  • Jiménez B, et al. (2012) Structure of minimal tetratricopeptide repeat domain protein Tah1 reveals mechanism of its interaction with Pih1 and Hsp90. J Biol Chem 287(8):5698-709 PMID:22179618
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  • Kakihara Y and Houry WA (2012) The R2TP complex: discovery and functions. Biochim Biophys Acta 1823(1):101-7 PMID:21925213
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  • Makhnevych T and Houry WA (2012) The role of Hsp90 in protein complex assembly. Biochim Biophys Acta 1823(3):674-82 PMID:21945180
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  • Makhnevych T, et al. (2012) Hsp110 is required for spindle length control. J Cell Biol 198(4):623-36 PMID:22908312
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  • Paci A, et al. (2012) The stability of the small nucleolar ribonucleoprotein (snoRNP) assembly protein Pih1 in Saccharomyces cerevisiae is modulated by its C terminus. J Biol Chem 287(52):43205-14 PMID:23139418
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  • Gong Y, et al. (2011) Bioinformatic approach to identify chaperone pathway relationship from large-scale interaction networks. Methods Mol Biol 787:189-203 PMID:21898237
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  • Cheung KL, et al. (2010) Alternative oligomeric states of the yeast Rvb1/Rvb2 complex induced by histidine tags. J Mol Biol 404(3):478-92 PMID:20934430
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  • Cheung KL, et al. (2010) Comparison of the multiple oligomeric structures observed for the Rvb1 and Rvb2 proteins. Biochem Cell Biol 88(1):77-88 PMID:20130681
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  • Costanzo M, et al. (2010) The genetic landscape of a cell. Science 327(5964):425-31 PMID:20093466
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  • Huen J, et al. (2010) Rvb1-Rvb2: essential ATP-dependent helicases for critical complexes. Biochem Cell Biol 88(1):29-40 PMID:20130677
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  • Gong Y, et al. (2009) An atlas of chaperone-protein interactions in Saccharomyces cerevisiae: implications to protein folding pathways in the cell. Mol Syst Biol 5:275 PMID:19536198
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  • Gribun A, et al. (2008) Yeast Rvb1 and Rvb2 are ATP-dependent DNA helicases that form a heterohexameric complex. J Mol Biol 376(5):1320-33 PMID:18234224
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  • Snider J and Houry WA (2008) AAA+ proteins: diversity in function, similarity in structure. Biochem Soc Trans 36(Pt 1):72-7 PMID:18208389
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  • Zhao R, et al. (2008) Molecular chaperone Hsp90 stabilizes Pih1/Nop17 to maintain R2TP complex activity that regulates snoRNA accumulation. J Cell Biol 180(3):563-78 PMID:18268103
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  • Zhao R and Houry WA (2007) Molecular interaction network of the Hsp90 chaperone system. Adv Exp Med Biol 594:27-36 PMID:17205672
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  • Zhao R, et al. (2005) Navigating the chaperone network: an integrative map of physical and genetic interactions mediated by the hsp90 chaperone. Cell 120(5):715-27 PMID:15766533
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