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Inhibition of Oncogenic and Activated Wild-Type ras-p21 Protein-Induced Oocyte Maturation by Peptides from the ras-Binding Domain of the raf-p74 Protein, Identified from Molecular Dynamics Calculations
Authors:Denise Chung   Shazia Amar   Albert Glozman   James M. Chen   Fred K. Friedman   Richard Robinson   Regina Monaco   Paul Brandt-Rauf   Z. Yamaizumi  Matthew R. Pincus
Affiliation:(1) Departments of Chemistry and Biology, Long Island University, Brooklyn, New York, 11201;(2) Department of Pathology and Laboratory Medicine, Veterans Affairs Medical Center, Brooklyn, New York, 11209;(3) Department of Pathology, SUNY Health Science Center, Brooklyn, New York, 11203;(4) Dupont Agricultural Products, Stein-Haskell Research Center, P.O. Box 30, Newark, Delaware, 19714;(5) Laboratory of Molecular Carcinogenesis, National Institutes of Health, Bethesda, Maryland, 20892;(6) Department of Biology, New York University, New York, New York, 10003;(7) Division of Environmental Sciences, Columbia College of Physicians and Surgeons, New York, New York, 10032;(8) National Cancer Institute, Tokyo, Japan
Abstract:In the preceding paper we found from molecular dynamics calculations that the structure of the ras-binding domain (RBD) of raf changes predominantly in three regions depending upon whether it binds to ras-p21 protein or to its inhibitor protein, rap-1A. These three regions of the RBD involve residues from the protein–protein interaction interface, e.g., between residues 60 and 72, residues 97–110, and 111–121. Since the rap-1A–RBD complex is inactive, these three regions are implicated in ras-p21-induced activation of raf. We have therefore co-microinjected peptides corresponding to these three regions, 62–76, 97–110, and 111–121, into oocytes with oncogenic p21 and microinjected them into oocytes incubated in in insulin, which activates normal p2l. All three peptides, but not a control peptide, strongly inhibit both oncogenic p21- and insulin-induced oocyte maturation. These findings corroborate our conclusions from the theoretical results that these three regions constitute raf effector domains. Since the 97–110 peptide is the strongest inhibitor of oncogenic p21, while the 111–121 peptide is the strongest inhibitor of insulin-induced oocyte maturation, the possibility exists that oncogenic and activated normal p21 proteins interact differently with the RBD of raf.
Keywords:ras-binding domain of raf  raf effector domain peptides  peptide inhibition of oocyte maturation  molecular dynamics
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