肌球蛋白分子结构和聚集特性的比较研究。龙虾肌球蛋白分子的结构。

R F Siemankowski, C R Zobel
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摘要

从美洲小龙虾(Homarus americanus)的腹屈肌中纯化的肌球蛋白,其平均长度为1559 +/- 218 a,杆状尾巴长1335 a,球形头部225 X 45 a,这是通过对铂影制剂的电子显微镜观察确定的。通过高速平衡离心研究和sds -丙烯酰胺凝胶电泳,确定了该分子的质量约为486,000道尔顿。碱性条件下的沉降平衡离心机研究和sds -丙烯酰胺凝胶电泳实验表明,该分子含有一个重链核(两条多肽链各重约21万道尔顿)和四个轻链(分别重约1.6万道尔顿和2万道尔顿)。测定了肌球蛋白的氨基酸组成。测定肌球蛋白的Mg2+活化、K+/ edta活化和Ca2+活化atp酶的特异性活性。胰蛋白酶消化龙虾肌球蛋白的动力学分析表明,龙虾肌球蛋白含有赖氨酸和精氨酸三种残基;缓慢分裂(k = 2.07 +/- 0.31 X 10(-2) mol /min2),快速分裂(k = 11.0 +/- 1.83 X 10(-2) mol /min2)和胰蛋白酶不敏感。每个分子有187 +/- 22个缓慢分裂残基,280 +/- 35个快速分裂残基,144 +/- 41个胰蛋白酶不敏感键。将这些分子参数与脊椎动物骨骼肌肌球蛋白的分子参数进行比较表明,这两种肌球蛋白在质量、形状和整体多肽链组成方面相似,但在局部多肽链构象或组成方面可能有很大不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative studies on the structure and aggregative properties of the myosin molecule. I. The structure of the lobster myosin molecule.

Myosin purified from the abdominal flexor muscle of the lobster, Homarus americanus, has a number average length of 1559 +/- 218 A, a rod like tail 1335 A long and a globular head 225 X 45 A as determined from electron microscopic observations on platinum shadowed preparations. The mass of the molecule was determined to be ca. 486,000 daltons from high speed equilibrium centrifugation studies at neutral and alkaline pH, and by SDS-acrylamide gel electrophoresis. Both sedimentation equilibrium centrifuge studies at alkaline pH and SDS-acrylamide gel electrophoresis experiments, indicate that the molecule contains a heavy chain core (two polypeptide chains weighing ca. 210,000 daltons each) and ca. four light chains of two weight classes (ca. 16,000 and 20,000 daltons). The amino acid composition of the myosin was determined. The specific activities of the Mg2+ -activated, K+/EDTA-activated, and Ca2+ -activated ATPases of the myosin were determined. Kinetic analysis of the digestion of lobster myosin with trypsin suggests that lobster myosin contains three classes of lysine and arginine residues; slowly split (k = 2.07 +/- 0.31 X 10(-2) moles/min2), rapidly split (k = 11.0 +/- 1.83 X 10(-2) moles/min2) and trypsin insensitive. There are 187 +/- 22 slowly split residues, 280 +/- 35 rapidly split residues, and 144 +/- 41 trypsin insensitive bonds per molecule. Comparison of these molecular parameters with those for the vertebrate skeletal muscle myosin indicates that the two myosins are similar in terms of mass, shape and overall polypeptide chain composition but may be considerably different in terms of local polypeptide chain conformation or composition.

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