• Joy Ghosh: all publications

    • Publications

      • Emerson R, Sage E, Ghosh J, Clark J. Chaperone-like activity revealed in the matricellular protein SPARC. Journal of cellular biochemistry 98 (4) , 701-5 PubMed ID:(16598771)

      • Ghosh J, Clark J. Insights into the domains required for dimerization and assembly of human alphaB crystallin. Protein science : a publication of the Protein Society 14 (3) , 684-95 PubMed ID:(15722445 )

      • Ghosh J, Estrada M, Clark J. Interactive domains for chaperone activity in the small heat shock protein, human alphaB crystallin. Biochemistry 44 (45) , 14854-69 PubMed ID:(16274233)

      • Ghosh J, Estrada M, Clark J. Structure-based analysis of the beta8 interactive sequence of human alphaB crystallin. Biochemistry 45 (32) , 9878-86 PubMed ID:(16893188)

      • Ghosh J, Estrada M, Houck S, Clark J. The function of the beta3 interactive domain in the small heat shock protein and molecular chaperone, human alphaB crystallin. Cell stress & chaperones 11 (2) , 187-97 PubMed ID:(16817325)

      • Ghosh J, Houck S, Clark J. Interactive Domains in the Molecular Chaperone Human alphaB Crystallin Modulate Microtubule Assembly and Disassembly. PLoS ONE 2 , e498 (Epub 06 Jun 2007) PubMed ID:(17551579)

      • Ghosh J, Houck S, Doneanu C, Clark J. The beta4-beta8 groove is an ATP-interactive site in the alpha crystallin core domain of the small heat shock protein, human alphaB crystallin. Journal of molecular biology 364 (3) , 364-75 (Epub 05 Sep 2006) PubMed ID:(17022999)

      • Ghosh J, Shenoy A, Clark J. Interactions between important regulatory proteins and human alphaB crystallin. Biochemistry 46 (21) , 6308-17 (Epub 08 May 2007) PubMed ID:(17487982)

      • Ghosh J, Shenoy A, Clark J. N- and C-Terminal motifs in human alphaB crystallin play an important role in the recognition, selection, and solubilization of substrates. Biochemistry 45 (46) , 13847-54 PubMed ID:(17105203)

      • Liu L, Ghosh J, Clark J, Jiang S. Studies of alphaB crystallin subunit dynamics by surface plasmon resonance. Analytical biochemistry 350 (2) , 186-95 (Epub 13 Jan 2006) PubMed ID:(16480679)

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