4.4 Article

Intermolecular dynamics and function in actin filaments

期刊

BIOPHYSICAL CHEMISTRY
卷 86, 期 2-3, 页码 191-201

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/S0301-4622(00)00143-5

关键词

actin filaments; intermolecular interface; intermolecular dynamics; pyrene fluorescence; excimer fluorescence; cross-linking

资金

  1. NIAMS NIH HHS [AR 22031, R01 AR022031] Funding Source: Medline

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Structural models of F-actin suggest that three segments in actin, the DNase I binding loop (residues 38-52), the hydrophobic plug (residues 262-274) and the C-terminus, contribute to the formation of an intermolecular interface between three monomers in F-actin. To test these predictions and also to assess the dynamic properties of intermolecular contacts in F-actin, Cys-374 pyrene-labeled skeletal alpha-actin and pyrene-labeled yeast actin mutants, with Gln-41 or Ser-265 replaced with cysteine, were used in fluorescence experiments. Large differences in Cys-374 pyrene fluorescence among copolymers of subtilisin-cleaved (between Met-47 and Gly-48) and uncleaved ol-actin showed both intra- and intermolecular interactions between the C-terminus and loop 38-52 in F-actin. Excimer band formation due to intermolecular stacking of pyrene probes attached to Cys-41 and Cys-265, and Cys-41 and Cys-374, in mutant yeast F-actin confirmed the proximity of these residues on the paired sites (to within 18 Angstrom) in accordance with the models of F-actin structure. The dynamic properties of the intermolecular interface in F-actin formed by loop 38-52, plug 262-274 and the C-terminus may account for the observed cross-linking of these sites with reagents < 18 Angstrom. The functional importance of actin filament dynamics was demonstrated by the inhibition of the in vitro motility in the Gln-41-Cys-374 cross-linked actin filaments. (C) 2000 Elsevier Science B.V. All rights reserved.

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