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肌动蛋白丝中的分子间动力学与功能

Intermolecular dynamics and function in actin filaments.

作者信息

Kim E, Reisler E

机构信息

Department of Chemistry and Biochemistry and the Molecular Biology Institute, University of California, Los Angeles 90095, USA.

出版信息

Biophys Chem. 2000 Aug 30;86(2-3):191-201. doi: 10.1016/s0301-4622(00)00143-5.

Abstract

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 alpha-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 A) 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 A. 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.

摘要

F-肌动蛋白的结构模型表明,肌动蛋白中的三个片段,即脱氧核糖核酸酶I结合环(第38 - 52位残基)、疏水塞(第262 - 274位残基)和C末端,有助于F-肌动蛋白中三个单体之间分子间界面的形成。为了验证这些预测,并评估F-肌动蛋白中分子间接触的动态特性,在荧光实验中使用了用芘标记的半胱氨酸-374的骨骼肌α-肌动蛋白以及芘标记的酵母肌动蛋白突变体(其中谷氨酰胺-41或丝氨酸-265被半胱氨酸取代)。枯草杆菌蛋白酶切割的(在甲硫氨酸-47和甘氨酸-48之间)和未切割的α-肌动蛋白共聚物之间,半胱氨酸-374芘荧光存在很大差异,这表明F-肌动蛋白中C末端与38 - 52环之间存在分子内和分子间相互作用。突变型酵母F-肌动蛋白中,由于连接在半胱氨酸-41和半胱氨酸-265以及半胱氨酸-41和半胱氨酸-374上的芘探针分子间堆积而形成的激基缔合带,证实了根据F-肌动蛋白结构模型,这些残基在配对位点上彼此接近(距离在18埃以内)。由38 - 52环、262 - 274塞和C末端形成的F-肌动蛋白分子间界面的动态特性,可能解释了观察到的这些位点与小于18埃的试剂的交联现象。谷氨酰胺-41 - 半胱氨酸-374交联的肌动蛋白丝体外运动性受到抑制,证明了肌动蛋白丝动力学的功能重要性。

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