

Author: Ishiyama N. Bates I.R. Hill C.M. Wood D.D. Matharu P. Viner N.J. Moscarello M.A. Harauz G.
Publisher: Academic Press
ISSN: 1047-8477
Source: Journal of Structural Biology, Vol.136, Iss.1, 2001-10, pp. : 30-45
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Abstract
The recombinant 18.5-kDa charge isoform of murine myelin basic protein (rmMBP) is unmodified posttranslationally and was used to study the effects of deimination, i.e., the conversion of arginyl to citrullinyl residues, on the protein's interactions with itself and with lipids. The unmodified species rmMBP-Cit0 (i.e., containing no citrullinyl residues) interacted with binary monolayers containing acidic (phosphatidylinositol) and nickel-chelating lipids to form paracrystalline arrays with 4.8-nm spacing. A sample of protein was deiminated to an average of 9 citrullinyl residues per molecule of protein, yielding rmMBP-Cit9. Under both low- and high-salt conditions, this species formed better-ordered domains than rmMBP-Cit0, viz., planar crystalline assemblies. Thus, deimination of MBP resulted in a significant alteration of its lipid-organizing and self-interaction properties that might be operative in myelin
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