Platelet contractile proteins: separation and characterization of the actin and myosin-like components.

D H Cove, N Crawford
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Abstract

Solution of thrombosthenin, the contractile protein complex isolated from pig platelets, have been studied by analytical ultracentrifugation and zone sedimentation in sucrose density gradients. Freshly prepared thrombosthenin in 0.6 M KCl shows a prominent peak in the ultracentrifuge with S degrees 20w about 5.5 and higher molecular weight aggregates (greater than 100S) sedimenting quickly to the bottom of the cell. Short term storage of high ionic strength solutions of thrombosthenin induces actomyosin-like gel formation and these gels dissociate with ATP and Mg2+ ions into two components of S degrees 20w 8.0 and S degrees 20w50. The supernatant, after actomyosin gel removal, contains only the S degrees 20w5.5 protein. From results of Ca2+ ATPase activity measurements and SDS polyacrylamide gel electrophoretic mobilities of dissociated thrombosthenin separated into fractions in sucrose density gradients, it is concluded that the S degrees20w5.5 protein species is the myosin-like protein of thrombosthenin. The S degrees 20w8.0 protein is not fibrinogen but also has myosin-like properties and is believed to be myosin dimer. Species of higher S values seen in the presence of ATP and Mg2+ in the analytical ultracentrifuge and located in the higher density zones of the sucrose gradients all gave in SDS polyacrylamide gel electrophoresis a single band of molecular weight 46-47,000 daltons. These subunit proteins appear to be derived from a range of polymeric variants of the F-actin-like protein of the contractile complex. All these higher density F-actin-like proteins readily form superprecipitates and display syneresis when combined with rabbit skeletal muscle myosin or platelet myosin. They are also all capable of conferring upon these two myosins a Mg2+ activated ATPase activity. It is suggested that in thrombosthenin solutions a myosin monomer-dimer equilibrium state exists which can be directionally influenced by a number of factors. The coexistence in the solution of F-actin and Mg2+ ATP, for example, increases the propensity of the myosin-like protein to form the higher molecular weight aggregate. Such aggregation may be the initiating mechanism for the intracellular organization of the thick filaments of the actomyosin complex, preparatory to a contractile event.

血小板收缩蛋白:肌动蛋白和肌球蛋白样成分的分离和表征。
从猪血小板中分离出一种可收缩的蛋白复合物——凝血舒张素(thrombosthenin),用分析性超离心和蔗糖密度梯度带沉降法对其溶液进行了研究。新制备的凝血凝素在0.6 M KCl中,在S度20w约5.5的超离心中显示出一个突出的峰,高分子量的聚集体(大于100S)迅速沉积到细胞底部。血栓凝血素高离子强度溶液的短期储存诱导肌动球蛋白样凝胶形成,这些凝胶与ATP和Mg2+离子解离成S度20w8.0和S度20w50两种组分。去除肌动球蛋白凝胶后的上清液只含有S度20w5.5蛋白。从Ca2+ atp酶活性测定和SDS -聚丙烯酰胺凝胶电泳迁移率的结果可以看出,S度20w5.5蛋白是血栓舒张蛋白的肌球蛋白样蛋白。S度20w8.0蛋白不是纤维蛋白原,但也具有类似肌凝蛋白的特性,被认为是肌凝蛋白二聚体。在ATP和Mg2+存在的情况下,在分析性超离心机中观察到的S值较高的物种,位于蔗糖梯度的高密度区,在SDS聚丙烯酰胺凝胶电泳中都给出了46-47,000道尔顿的单带分子量。这些亚基蛋白似乎来源于一系列可收缩复合体的f -肌动蛋白样蛋白的聚合变体。所有这些高密度的f -肌动蛋白样蛋白与兔骨骼肌肌凝蛋白或血小板肌凝蛋白结合时容易形成超沉淀并表现出协同作用。它们也都能赋予这两种肌凝蛋白Mg2+激活的atp酶活性。结果表明,在血栓凝血蛋白溶液中存在肌凝蛋白单体-二聚体平衡状态,这种平衡状态受多种因素的定向影响。例如,f -肌动蛋白和Mg2+ ATP在溶液中的共存,增加了肌凝蛋白样蛋白形成高分子量聚集体的倾向。这种聚集可能是肌动球蛋白复合体粗丝细胞内组织的初始机制,为收缩事件做准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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