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血小板微原纤维:它们与微管及收缩蛋白的关系

Microfibrils of blood platelets: their relationship TO MICROTUBULES AND THE CONTRACTILE PROTEIN.

作者信息

Zucker-Franklin D

出版信息

J Clin Invest. 1969 Jan;48(1):165-75. doi: 10.1172/JCI105965.

Abstract

Human blood platelets were subjected to osmotic shock, brief sonication, pressure homogenization, or treatment with adenosine diphosphate (ADP). These procedures demonstrated an abundance of cytoplasmic microfibrils. The fibrils resembled those found on electron microscopy of partially purified thrombosthenin, the actomyosin-like protein isolated from platelets, and they also appeared to resemble the myofilaments of smooth muscle. Similar fibrils were not found in leukocytes studied under identical conditions. Treatment with colchicine (2 x 10(-5) mole/liter) resulted in the disappearance of microtubules but did not affect the morphology of the microfibrils or interfere with platelet-dependent clot retraction. Thus, microfibrils rather than microtubules may represent the morphologic counterpart of the contractile protein. Brief osmotic shock at low temperature or treatment with 10(-4) M ADP caused the marginal band of microtubules to be replaced by a bundle of intertwining microfibrils. The apparent inter-conversion of microtubules and microfibrils under a variety of conditions led to the hypothesis that fibrils and tubules consist of similar subunits whose degree of polymerization might be dependent on local cytoplasmic forces. Furthermore, on the basis of these observations, it is postulated that the contractile properties of the cells may be vested in the microfibrils, whereas the tubules may serve to maintain the highly asymmetric shape characteristic of circulating and irreversibly aggregated platelets.

摘要

将人体血小板进行渗透性休克、短暂超声处理、压力匀浆或用二磷酸腺苷(ADP)处理。这些操作显示出大量的细胞质微原纤维。这些微原纤维类似于在部分纯化的凝血栓蛋白(从血小板中分离出的肌动球蛋白样蛋白)的电子显微镜观察中发现的微原纤维,并且它们似乎也类似于平滑肌的肌丝。在相同条件下研究的白细胞中未发现类似的微原纤维。用秋水仙碱(2×10⁻⁵摩尔/升)处理导致微管消失,但不影响微原纤维的形态,也不干扰血小板依赖性的血块回缩。因此,微原纤维而非微管可能代表收缩蛋白的形态学对应物。低温下的短暂渗透性休克或用10⁻⁴M ADP处理导致微管的边缘带被一束相互缠绕的微原纤维所取代。在各种条件下微管和微原纤维明显的相互转化导致了这样一种假说,即微原纤维和微管由相似的亚基组成,其聚合程度可能取决于局部细胞质力。此外,基于这些观察结果推测,细胞的收缩特性可能存在于微原纤维中,而微管可能有助于维持循环和不可逆聚集血小板特有的高度不对称形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a6b/322202/a9c1977c0a24/jcinvest00207-0182-a.jpg

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