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甘氨酸699对骨骼肌肌球蛋白的运动活性至关重要。

Glycine 699 is pivotal for the motor activity of skeletal muscle myosin.

作者信息

Kinose F, Wang S X, Kidambi U S, Moncman C L, Winkelmann D A

机构信息

Department of Pathology, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.

出版信息

J Cell Biol. 1996 Aug;134(4):895-909. doi: 10.1083/jcb.134.4.895.

Abstract

Myosin couples ATP hydrolysis to the translocation of actin filaments to power many forms of cellular motility. A striking feature of the structure of the muscle myosin head domain is a 9-nm long "lever arm" that has been postulated to produce a 5-10-nm power stroke. This motion must be coupled to conformational changes around the actin and nucleotide binding sites. The linkage of these sites to the lever arm has been analyzed by site-directed mutagenesis of a conserved glycine residue (G699) found in a bend joining two helices containing the highly reactive and mobile cysteine residues, SH1 and SH2. Alanine mutagenesis of this glycine (G699A) dramatically alters the motor activity of skeletal muscle myosin, inhibiting the velocity of actin filament movement by > 100-fold. Analysis of the defect in the G699A mutant myosin is consistent with a marked slowing of the transition within the motor domain from a strong binding to a weak binding interaction with actin. This result is interpreted in terms of the role of this residue (G699) as a pivot point for motion of the lever arm. The recombinant myosin used in these experiments has been produced in a unique expression system. A shuttle vector containing a regulated muscle-specific promoter has been developed for the stable expression of recombinant myosin in C2C12 cells. The vector uses the promoter/enhancer region, the first two and the last five exons of an embryonic rat myosin gene, to regulate the expression of an embryonic chicken muscle myosin cDNA. Stable cell lines transfected with this vector express the unique genetically engineered myosin after differentiation into myotubes. The myosin assembles into myofibrils, copurifies with the endogenous myosin, and contains a complement of muscle-specific myosin light chains. The functional activity of the recombinant myosin is readily analyzed with an in vitro motility assay using a species-specific anti-S2 mAb to selectively assay the recombinant protein. This expression system has facilitated manipulation and analysis of the skeletal muscle myosin motor domain and is also amenable to a wide range of structure-function experiments addressing questions unique to the muscle-specific cytoarchitecture and myosin isoforms.

摘要

肌球蛋白将ATP水解与肌动蛋白丝的移位相偶联,为多种形式的细胞运动提供动力。肌肉肌球蛋白头部结构域的一个显著特征是有一个9纳米长的“杠杆臂”,据推测它能产生5到10纳米的动力冲程。这种运动必须与肌动蛋白和核苷酸结合位点周围的构象变化相偶联。通过对一个保守甘氨酸残基(G699)进行定点诱变,分析了这些位点与杠杆臂的联系,该甘氨酸残基位于连接两个含有高反应性和可移动半胱氨酸残基SH1和SH2的螺旋的弯曲处。对该甘氨酸进行丙氨酸诱变(G699A)会显著改变骨骼肌肌球蛋白的运动活性,使肌动蛋白丝移动速度降低100倍以上。对G699A突变型肌球蛋白缺陷的分析与运动结构域内从与肌动蛋白的强结合到弱结合相互作用的转变显著减慢一致。这一结果根据该残基(G699)作为杠杆臂运动的枢轴点的作用来解释。这些实验中使用的重组肌球蛋白是在一个独特的表达系统中产生的。已开发出一种含有调控性肌肉特异性启动子的穿梭载体,用于在C2C12细胞中稳定表达重组肌球蛋白。该载体利用胚胎大鼠肌球蛋白基因的启动子/增强子区域、前两个和最后五个外显子来调控胚胎鸡肌肉肌球蛋白cDNA的表达。用该载体转染的稳定细胞系在分化成肌管后表达独特的基因工程肌球蛋白。该肌球蛋白组装成肌原纤维,与内源性肌球蛋白一起纯化,并含有一组肌肉特异性肌球蛋白轻链。使用物种特异性抗S2单克隆抗体通过体外运动分析可以很容易地分析重组肌球蛋白的功能活性,以选择性地检测重组蛋白。这个表达系统有助于对骨骼肌肌球蛋白运动结构域进行操作和分析,也适用于一系列针对肌肉特异性细胞结构和肌球蛋白异构体特有的问题的结构-功能实验。

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