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多头绒泡菌中对钙离子稳态障碍的收缩和结构反应

Contractile and structural reactions to impediments of Ca2+-homeostasis in Physarum polycephalum.

作者信息

Wohlfarth-Bottermann K E, Shraideh Z, Baranowski Z

出版信息

Cell Struct Funct. 1983 Sep;8(3):255-65. doi: 10.1247/csf.8.255.

Abstract

A combined application of 5 mM KCN and 19 microM Ca++-ionophore A-23187 leads to pronounced contractures of plasmodial strands of Physarum polycephalum. The appearance of the contractures is independent of the amount of Ca++ in the external medium. Tensiometric registrations of longitudinal contraction activity (isometric regime) reveal an average tension increase of 50 mp compared with the preceding tension level before the addition of KCN and ionophore. This high force output during the contracture coincides with a pronounced increase in the number of cytoplasmic actomyosin fibrils. Their ultrastructure is seen as a high lateral density of strictly parallel arranged F-actin filaments; the state of cytoplasmic actomyosin during this isometric contracture corresponds to the ultrastructure of isometrically contracted fibrils during the normal contraction-relaxation cycle of this organism. A simultaneous impediment of respiration and Ca++ homeostasis strongly favours a shift of the actin equilibrium to the high polymeric side in the form of fibrils and may thus be used as a preparatory step improving the specimens in the context of other investigations, e.g., for immunocytochemical investigations or for the preparation of cell-free models to be reactivated after extraction procedures.

摘要

5 mM 氰化钾(KCN)与 19 μM 钙离子载体 A - 23187 的联合应用会导致多头绒泡菌(Physarum polycephalum)的原质团丝出现明显的挛缩。挛缩的出现与外部介质中钙离子的含量无关。纵向收缩活动(等长状态)的张力测量记录显示,与添加 KCN 和离子载体之前的张力水平相比,平均张力增加了 50 毫帕。挛缩过程中的这种高力输出与细胞质肌动球蛋白纤维数量的显著增加相一致。其超微结构表现为严格平行排列的 F - 肌动蛋白丝的高侧向密度;这种等长挛缩期间细胞质肌动球蛋白的状态与该生物体正常收缩 - 松弛周期中等长收缩纤维的超微结构相对应。呼吸和钙离子稳态的同时阻碍强烈有利于肌动蛋白平衡以纤维形式向高聚合物一侧转变,因此可作为在其他研究(例如免疫细胞化学研究或制备在提取程序后可重新激活的无细胞模型)背景下改善标本的预处理步骤。

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