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丝氨酸在重链非螺旋尾部的磷酸化调控棘阿米巴肌球蛋白 II 的纤维结构和组装。

Regulation of the filament structure and assembly of Acanthamoeba myosin II by phosphorylation of serines in the heavy-chain nonhelical tailpiece.

机构信息

Laboratory of Cell Biology, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Jan 2;110(1):E33-40. doi: 10.1073/pnas.1219727110. Epub 2012 Dec 17.

Abstract

Acanthamoeba myosin II (AMII) has two heavy chains ending in a 27-residue nonhelical tailpiece and two pairs of light chains. In a companion article, we show that five, and only five, serine residues can be phosphorylated both in vitro and in vivo: Ser639 in surface loop 2 of the motor domain and serines 1489, 1494, 1499, and 1504 in the nonhelical tailpiece of the heavy chains. In that paper, we show that phosphorylation of Ser639 down-regulates the actin-activated MgATPase activity of AMII and that phosphorylation of the serines in the nonhelical tailpiece has no effect on enzymatic activity. Here we show that bipolar tetrameric, hexameric, and octameric minifilaments of AMII with the nonhelical tailpiece serines either phosphorylated or mutated to glutamate have longer bare zones and more tightly clustered heads than minifilaments of unphosphorylated AMII, irrespective of the phosphorylation state of Ser639. Although antiparallel dimers of phosphorylated and unphosphorylated myosins are indistinguishable, phosphorylation inhibits dimerization and filament assembly. Therefore, the different structures of tetramers, hexamers, and octamers of phosphorylated and unphosphorylated AMII must be caused by differences in the longitudinal stagger of phosphorylated and unphosphorylated bipolar dimers and tetramers. Thus, although the actin-activated MgATPase activity of AMII is regulated by phosphorylation of Ser639 in loop 2 of the motor domain, the structure of AMII minifilaments is regulated by phosphorylation of one or more of four serines in the nonhelical tailpiece of the heavy chain.

摘要

棘阿米巴肌球蛋白 II(AMII)有两条重链,末端有一个 27 个残基的非螺旋尾段和两对轻链。在一篇相关文章中,我们证明了在体外和体内,只有五个丝氨酸残基可以被磷酸化:马达结构域表面环 2 中的 Ser639 和重链非螺旋尾段中的丝氨酸 1489、1494、1499 和 1504。在那篇论文中,我们证明了 Ser639 的磷酸化会下调 AMII 的肌动蛋白激活 MgATP 酶活性,而非螺旋尾段中的丝氨酸磷酸化对酶活性没有影响。在这里,我们发现,具有非螺旋尾段丝氨酸磷酸化或突变为谷氨酸的 AMII 双极四聚体、六聚体和八聚体微丝的裸区更长,头部更紧密聚集,而未磷酸化的 AMII 的微丝则没有,无论 Ser639 的磷酸化状态如何。尽管磷酸化和未磷酸化肌球蛋白的反平行二聚体是无法区分的,但磷酸化会抑制二聚体和纤维组装。因此,磷酸化和未磷酸化的 AMII 的四聚体、六聚体和八聚体的不同结构必须是由磷酸化和未磷酸化的双极二聚体和四聚体的纵向错开差异引起的。因此,尽管 AMII 的肌动蛋白激活 MgATP 酶活性受马达结构域环 2 中 Ser639 的磷酸化调节,但 AMII 微丝的结构受重链非螺旋尾段中一个或多个丝氨酸的磷酸化调节。

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