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Normal Mode Analysis of KRas4B Reveals Partner Specific Dynamics

  1. Author:
    Eren, Meryem
    Tuncbag, Nurcan
    Jang,Hyunbum
    Nussinov,Ruth
    Gursoy, Attila
    Keskin, Ozlem
  2. Author Address

    Koc Univ, Mol Biol & Genet, TR-34450 Istanbul, Turkey.Koc Univ, Chem & Biol Engn, Coll Engn, TR-34450 Istanbul, Turkey.Koc Univ, Sch Med, TR-34450 Istanbul, Turkey.NCI, Computat Struct Biol Sect, Frederick Natl Lab Canc Res, Lab Canc Immunometab, Frederick, MD 21702 USA.Tel Aviv Univ, Sackler Sch Med, Dept Human Mol Genet & Biochem, IL-69978 Tel Aviv, Israel.Koc Univ, Comp Engn, TR-34450 Istanbul, Turkey.
    1. Year: 2021
    2. Date: May 27
    3. Epub Date: 2021 05 12
  1. Journal: The journal of physical chemistry. B
  2. AMER CHEMICAL SOC,
    1. 125
    2. 20
    3. Pages: 5210-5221
  3. Type of Article: Article
  4. ISSN: 1520-6106
  1. Abstract:

    Ras GTPase interacts with its regulators and downstream effectors for its critical function in cellular signaling. Targeting the disrupted mechanisms in Ras-related human cancers requires understanding the distinct dynamics of these protein-protein interactions. We performed normal mode analysis (NMA) of KRas4B in wild-type or mutant monomeric and neurofibromin-1 (NF1), Son of Sevenless 1 (SOS1) or Raf-1 bound dimeric conformational states to reveal partner-specific dynamics of the protein. Gaussian network model (GNM) analysis showed that the known KRas4B lobes further partition into subdomains upon binding to its partners. Furthermore, KRas4B interactions with different partners suppress the flexibility in not only their binding sites but also distant residues in the allosteric lobe in a partner-specific way. The conformational changes can be driven by intrinsic residue fluctuations of the open state KRas4B-GDP, as we illustrated with anisotropic network model (ANM) analysis. The allosteric paths connecting the nucleotide binding residues to the allosteric site at alpha 3-L7 portray differences in the inactive and active states. These findings help in understanding the partner-specific KRas4B dynamics, which could be utilized for therapeutic targeting.

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External Sources

  1. DOI: 10.1021/acs.jpcb.1c00891
  2. PMID: 33978412
  3. WOS: 000657362700004

Library Notes

  1. Fiscal Year: FY2020-2021
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