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Supramolecular Organization of Immature and Mature Murine Leukemia Virus Revealed By Electron Cryo-Microscopy - Implications For Retroviral Assembly Mechanisms

  1. Author:
    Yeager, M.
    Wilsonkubalek, E. M.
    Weiner, S. G.
    Brown, P. O.
    Rein, A.
    1. Year: 1998
  1. Journal: Proceedings of the National Academy of Sciences of the United States of America
    1. 95
    2. 13
    3. Pages: 7299-7304
  2. Type of Article: Article
  1. Abstract:

    We have used electron cryo-microscopy and image analysis to examine the native structure of immature, protease-deficient (PR-) and mature, wild-type (WT) Moloney murine leukemia virus (MuLV). Maturational cleavage of the Gag polyprotein by the viral protease is associated with striking morphological changes. The PR- MuLV particles exhibit a rounded central core, which has a characteristic track-like shell on its surface, whereas the WT MuLV cores display a polygonal surface with loss of the track-like feature. The pleomorphic shape and inability to refine unique orientation angles suggest that neither the PR- nor the WT MuLV adheres to strict icosahedral symmetry. Nevertheless, the PR- MuLV particles do exhibit paracrystalline order with a spacing between Gag molecules of approximate to 45 Angstrom and a length of approximate to 200 Angstrom. Because of the pleomorphic shape and paracrystalline packing of the Gag-RNA complexes, we raise the possibility that assembly of MuLV is driven by protein-RNA, as well as protein-protein, interactions. The maturation process involves a dramatic reorganization of the packing arrangements within the ribonucleoprotein core with disordering and loosening of the individual protein components. [References: 68]

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