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盘基网柄菌变形虫收缩细胞骨架中肌球蛋白超分子结构的免疫化学分析。

Immunochemical analysis of the supramolecular structure of myosin in contractile cytoskeletons of Dictyostelium amoebae.

作者信息

Reines D, Clarke M

出版信息

J Biol Chem. 1985 Nov 15;260(26):14248-54.

PMID:3902827
Abstract

A collection of monoclonal antibodies against Dictyostelium myosin was screened to identify an antibody that could distinguish monomeric from polymeric myosin. An antibody was found that reacted only with monomeric myosin, provided that the antigen-antibody reaction was carried out in solution. This antibody was used in competition radioimmunoassays to probe the supramolecular structure of myosin in Triton-extracted cell models, or cytoskeletons, of Dictyostelium amoebae. The competition assay showed that, as isolated, cytoskeletal myosin was entirely filamentous, but could be converted to monomeric form by increasing the ionic strength of the surrounding buffer. As monomer, it remained associated with the cytoskeleton and could be cycled back to filament form by a second change of buffer. The ability of cytoskeletons to carry out ATP-dependent contraction was examined as a function of the assembly state of myosin. The results suggested that filamentous myosin is responsible for contraction of the cortical filament matrix.

摘要

筛选了一组针对盘基网柄菌肌球蛋白的单克隆抗体,以鉴定一种能够区分单体肌球蛋白和聚合肌球蛋白的抗体。发现了一种抗体,只要抗原 - 抗体反应在溶液中进行,它就只与单体肌球蛋白发生反应。该抗体用于竞争放射免疫测定,以探测盘基网柄菌变形虫在经 Triton 提取的细胞模型或细胞骨架中的肌球蛋白超分子结构。竞争测定表明,分离出来的细胞骨架肌球蛋白完全是丝状的,但通过增加周围缓冲液的离子强度可以转化为单体形式。作为单体,它仍与细胞骨架结合,并且通过第二次更换缓冲液可以循环回到丝状形式。研究了细胞骨架进行 ATP 依赖性收缩的能力与肌球蛋白组装状态的关系。结果表明,丝状肌球蛋白负责皮质丝状基质的收缩。

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