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首页> 外文期刊>Biochemistry and Cell Biology >Actin polymerization is controlled by residue size at position 204.
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Actin polymerization is controlled by residue size at position 204.

机译:肌动蛋白的聚合反应受204位残基大小的控制。

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Previous work has shown that purified double mutant A204C/C374A yeast actin is polymerization-deficient in vitro under physiological concentrations. To understand the importance of the 204 residue in subdomain 4, a series of actin proteins with a single mutation at this position were created with Cys-374 retained. Only yeast expressing A204G-, A204S-, or A204C-actin were viable. The A204G and A204S strains were sensitive to cold temperature and hyperosmolarity, whereas the A204C strain showed more profound effects on growth under these conditions. Cells expressing A204C-actin exhibited anomalies previously observed for A204C/C374A actin, including abnormal actin structures. A204G- and A204S-actin proteins had 12- and 13-fold increased critical concentrations, respectively, relative to wild-type. Only at very high concentrations could A204C actin polymerize when ATP was bound; when hydrolyzed, the ADP-containing A204C filaments depolymerized, demonstrating a profound difference in critical concentration between ATP and ADP states with A204C actin. A correlation between size of the residue substituted at position 204 and energy minimization of actin filament models was observed. We propose that the region surrounding residue 204 is involved in interactions that change depending on the phosphorylation state of the bound nucleotide that might reflect different conformations of F-actin subunits.
机译:先前的工作表明,纯化的双重突变体A204C / C374A酵母肌动蛋白在生理浓度下体外聚合缺陷。为了了解亚结构域4中204残基的重要性,创建了一系列在此位置具有单个突变的肌动蛋白,并保留了Cys-374。仅表达A204G-,A204S-或A204C-肌动蛋白的酵母是可行的。 A204G和A204S菌株对低温和高渗透压敏感,而A204C菌株对这些条件下的生长表现出更深远的影响。表达A204C-肌动蛋白的细胞表现出先前观察到的A204C / C374A肌动蛋白异常,包括异常的肌动蛋白结构。相对于野生型,A204G-和A204S-肌动蛋白的临界浓度分别增加了12倍和13倍。当ATP结合时,只有在非常高的浓度下,A204C肌动蛋白才能聚合。水解后,含ADP的A204C细丝解聚,这表明A204C肌动蛋白在ATP和ADP状态之间的临界浓度存在巨大差异。观察到在204位取代的残基的大小与肌动蛋白丝模型的能量最小化之间的相关性。我们提出,围绕残基204的区域参与相互作用,该相互作用根据结合的核苷酸的磷酸化状态而改变,这可能反映出F-肌动蛋白亚基的不同构象。

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