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盘基网柄菌肌球蛋白开关-1和开关-2之间盐桥的作用。

Role of the salt-bridge between switch-1 and switch-2 of Dictyostelium myosin.

作者信息

Furch M, Fujita-Becker S, Geeves M A, Holmes K C, Manstein D J

机构信息

Max-Planck-Institut für Medizinische Forschung, Jahnstr. 29, Heidelberg, D-69120, Germany.

出版信息

J Mol Biol. 1999 Jul 16;290(3):797-809. doi: 10.1006/jmbi.1999.2921.

Abstract

Motifs N2 and N3, also referred to as switch-1 and switch-2, form part of the active site of molecular motors such as myosins and kinesins. In the case of myosin, N3 is thought to act as a gamma-phosphate sensor and moves almost 6 A relative to N2 during the catalysed turnover of ATP, opening and closing the active site surrounding the gamma-phosphate. The closed form seems to be necessary for hydrolysis and is stabilised by the formation of a salt-bridge between an arginine residue in N2 and a glutamate residue in N3. We examined the role of this salt-bridge in Dictyostelium discoideum myosin. Myosin motor domains with mutations E459R or R238E, that block salt-bridge formation, show defects in nucleotide-binding, reduced rates of ATP hydrolysis and a tenfold reduction in actin affinity. Inversion of the salt-bridge in double-mutant M765-IS eliminates most of the defects observed for the single mutants. With the exception of a 2,500-fold higher KMvalue for ATP, the double-mutant displayed enzymatic and functional properties very similar to those of the wild-type protein. Our results reveal that, independent of its orientation, the salt-bridge is required to support efficient ATP hydrolysis, normal communication between different functional regions of the myosin head, and motor function.

摘要

模体N2和N3,也被称为开关1和开关2,是肌球蛋白和驱动蛋白等分子马达活性位点的一部分。就肌球蛋白而言,N3被认为充当γ-磷酸传感器,在ATP的催化周转过程中相对于N2移动近6埃,打开和关闭围绕γ-磷酸的活性位点。闭合形式似乎是水解所必需的,并通过N2中的精氨酸残基与N3中的谷氨酸残基之间形成盐桥而得以稳定。我们研究了这种盐桥在盘基网柄菌肌球蛋白中的作用。具有E459R或R238E突变(阻止盐桥形成)的肌球蛋白运动结构域在核苷酸结合方面存在缺陷,ATP水解速率降低,肌动蛋白亲和力降低了十倍。双突变体M765-IS中盐桥的反转消除了单突变体中观察到的大部分缺陷。除了ATP的KM值高出2500倍外,双突变体的酶学和功能特性与野生型蛋白非常相似。我们的结果表明,无论盐桥的方向如何,它对于支持高效的ATP水解、肌球蛋白头部不同功能区域之间的正常通讯以及运动功能都是必需的。

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