首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The contractile basis of ameboid movement. II. Structure and contractility of motile extracts and plasmalemma-ectoplasm ghosts
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The contractile basis of ameboid movement. II. Structure and contractility of motile extracts and plasmalemma-ectoplasm ghosts

机译:肌腱运动的收缩基础。二。运动提取物和质膜-质膜鬼的结构和收缩性

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摘要

The role of calcium and magnesium-ATP on the structure and contractility in motile extracts of Amoeba proteus and plasmalemma- ectoplasm "ghosts" of Chaos carolinensis has been investigated by correlating light and electron microscope observations with turbidity and birefringence measurements. The extract is nonmotile and contains very few F-actin filaments and myosin aggregates when prepared in the presence of both low calcium ion and ATP concentrations at an ionic strength of I = 0.05, pH 6.8. The addition of 1.0 mM magnesium chloride, 1.0 mM ATP, in the presence of a low calcium ion concentration (relaxation solution) induced the formation of some fibrous bundles of actin without contracting, whereas the addition of a micromolar concentration of calcium in addition to 1.0 mM magnesium-ATP (contraction solution) (Taylor, D. L., J. S. Condeelis, P. L. Moore, and R. D. Allen. 1973. J. Cell Biol. 59:378-394) initiated the formation of large arrays of F-actin filaments followed by contractions. Furthermore, plasmalemma-ectoplasm ghosts prepared in the relaxation solution exhibited very few straight F-actin filaments and myosin aggregates. In contrast, plasmalemmaectoplasm ghosts treated with the contraction solution contained many straight F-actin filaments and myosin aggregates. The increase in the structure of ameba cytoplasm at the endoplasm-ectoplasm interface can be explained by a combination of the transformation of actin from a less filamentous to a more structured filamentous state possibly involving the cross-linking of actin to form fibrillar arrays (see above-mentioned reference) followed by contractions of the actin and myosin along an undetermined distance of the endoplasm and/or ectoplasm.
机译:通过将光和电子显微镜观察结果与浊度和双折射测量值相关联,研究了钙和镁-ATP对变形虫变形虫提取物和潮州卡洛莱姆质膜“鬼”的结构和收缩的作用。在低钙离子和ATP浓度下,离子强度为I = 0.05,pH 6.8的条件下制备时,提取物不运动,几乎不含F-肌动蛋白丝和肌球蛋白聚集体。在低钙离子浓度(松弛溶液)的存在下添加1.0 mM氯化镁和1.0 mM ATP会导致一些肌动蛋白纤维束的形成而不会收缩,而在1.0的浓度下添加了微摩尔浓度的钙mM镁-ATP(收缩液)(Taylor,DL,JS Condeelis,PL Moore和RD Allen。1973. J. Cell Biol。59:378-394)引发了大批F-肌动蛋白丝的形成,随后发生收缩。此外,在松弛溶液中制备的质膜-质膜鬼影显示出很少的直F-肌动蛋白丝和肌球蛋白聚集体。相反,用收缩溶液处理过的质膜异种质鬼影含有许多直的F-肌动蛋白丝和肌球蛋白聚集体。内质-胞质界面处变形虫的细胞质结构的增加可以通过肌动蛋白从较少丝状转变为结构化丝状的转变的组合来解释,可能涉及肌动蛋白的交联形成原纤维阵列(参见上文) (参考文献)之后,肌动蛋白和肌球蛋白沿着内质和/或外质的不确定距离收缩。

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