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兔心肌肌球蛋白。I. 天然分子的物理和化学特性

Rabbit cardiac myosin. I. Physical and chemical characterization of the native molecule.

作者信息

Wolodko W T, Kay C M

出版信息

Can J Biochem. 1975 Feb;53(2):164-74. doi: 10.1139/o75-025.

DOI:10.1139/o75-025
PMID:123822
Abstract

Rabbit cardiac myosin, isolated from frozen tissue, was effectively purified by batchwise treatment with DEAE-cellulose in addition to suing cilution-precipitation techniques. An extensive experimental program was subsequently carried out with respect to the enzymic amino acid, optical and physicochemical properties of native cardiac myosin. This program has included the following: examination of the effects of pH and varying concentrations of ATP, CaCl2, MgCl2, and PCMB on its ATPase activity; measurement of its circular dichroic spectrum in solvent buffers, at different pH or containing ATP in the absence or presence of Ca-2+ or Mg-2+ ions; study of the concentration dependence of its viscosity and sedimentation velocity at low temperatures; and investigation of its molecular weight by the Archibald method and low- and high-speed sedimentation equilibrium. The results of these studies were consistent with the interpretation that cardiac myosin is comprised of highly asymmetric, semi-rigid molecules with a molecular weight in the order of 4.7 times 10-5, which display non-ideality even in solvent buffers of high ionic strength at neurtal pH. In addition, computer analysis of the high-speed sedimentation equilibrium data has provided evidence for the presence of a self-association reaction at low protein concentration. Even though the specif ATPase activity of cardiac myosin was found to be approximately one-third that reported for skeletal myosin in all cases, it was concluded, on the the basis of the essentially analogous physical and chemical properties of rabbit cardiac and skeletal myosin, that the two proteins are very similar in terms of molecular size, shape, and secondary structure.

摘要

从冷冻组织中分离出的兔心肌肌球蛋白,除了采用稀释沉淀技术外,还通过用DEAE-纤维素进行分批处理有效地进行了纯化。随后针对天然心肌肌球蛋白的酶促氨基酸、光学和物理化学性质开展了广泛的实验项目。该项目包括以下内容:研究pH值以及不同浓度的ATP、CaCl2、MgCl2和对氯汞苯甲酸对其ATP酶活性的影响;测量其在溶剂缓冲液中、不同pH值下或在不存在或存在Ca2+或Mg2+离子时含有ATP的圆二色光谱;研究其在低温下粘度和沉降速度与浓度的关系;以及通过阿奇博尔德方法和低速及高速沉降平衡研究其分子量。这些研究结果与以下解释一致:心肌肌球蛋白由高度不对称的半刚性分子组成,分子量约为4.7×10⁵,即使在中性pH值的高离子强度溶剂缓冲液中也表现出非理想性。此外,对高速沉降平衡数据的计算机分析提供了证据,表明在低蛋白浓度下存在自缔合反应。尽管在所有情况下都发现心肌肌球蛋白的比ATP酶活性约为骨骼肌肌球蛋白报道值的三分之一,但基于兔心肌和骨骼肌肌球蛋白基本类似的物理和化学性质得出结论,这两种蛋白质在分子大小、形状和二级结构方面非常相似。

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