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用重酶解肌球蛋白标记法对大鼠脑微丝的超微结构研究。I. 胞体、树突和轴突。

An ultrastructural study of the microfilaments in rat brain by means of heavy meromyosin labeling. I. The perikaryon, the dendrites and the axon.

作者信息

LeBeux Y J, Willemot J

出版信息

Cell Tissue Res. 1975 Jun 27;160(1):1-36. doi: 10.1007/BF00219840.

Abstract

Nervous tissue pieces from the caudate nucleus and the substantia nigra of the rat were incubated in cold glycerol solutions of decreasing concentrations and then transferred into standard phosphate buffer (pH 7.0) or into tris-K+-Mg++-Ca++ buffer (pH 7.9) containing HMM, prepared from rabbit skeletal muscle by tryptic digestion. As controls, pieces were immersed for an identical period in the same buffers (1) without HMM or (2) with HMM to which had been added 2.5 mM Na+ pyrophosphate or 5 mM ATP. In control neurons smooth-surfaced microfilaments, about 50 A in diameter, were observed. After reaction with HMM, the microfilaments were increased in number and density and in width to 180-200 A. A meshwork was formed. Arrowheads pointing in the same direction were spaced at regular intervals (300-350 A) among short segments of the surfaces of the microfilaments, depending upon the plane of section. More often, however, typical arrowheads were not observed, and the surfaces of the microfilaments were seen coated with polarized side-arms cross-bridging the spaces between adjacent elements at more or less regular intervals. When cross-sectioned, the microfilaments appeared as dense dots from which a material of lesser electron density radiated. Following incubation in HMM solutions containing Na+ pyrophosphate or ATP, no arrowhead structures were seen. Of particular interest was the structural relation of the actin-like filaments with occasional, tapered myosin-like filaments, and with the plasma membrane, which served as anchor points. Mitochondria and smooth ER membranes were observed to be attached to the actin-like filaments or enmeshed in the network. The microtubules, as well as most of the neurofilaments, were disrupted by the glycerination procedure at 4 degrees, and thus no precision about the structural relationship of the actin-like filaments with the latter elements could be added. The role of the actin-like filaments in the transport of material, by a mechanism of chemomechanical transduction, throughout the neuron from sites of synthesis to functional locations, and between several functional locations, is discussed.

摘要

将大鼠尾状核和黑质的神经组织块置于浓度递减的冷甘油溶液中孵育,然后转移至标准磷酸盐缓冲液(pH 7.0)或含有经胰蛋白酶消化从兔骨骼肌制备的重酶解肌球蛋白的三羟甲基氨基甲烷 - K⁺ - Mg²⁺ - Ca²⁺缓冲液(pH 7.9)中。作为对照,将组织块在相同缓冲液中浸泡相同时间:(1)不含重酶解肌球蛋白;(2)含重酶解肌球蛋白且已添加2.5 mM焦磷酸钠或5 mM三磷酸腺苷。在对照神经元中,观察到直径约50埃的表面光滑的微丝。与重酶解肌球蛋白反应后,微丝数量、密度增加,宽度增至180 - 200埃,并形成网络。根据切片平面,在微丝表面短节段之间,指向同一方向的箭头以规则间隔(300 - 350埃)排列。然而,更常见的是未观察到典型箭头,微丝表面可见覆盖着极化侧臂,以或多或少规则的间隔跨接相邻微丝间的间隙。横切时,微丝呈现为密集的点,从这些点放射出电子密度较低的物质。在含有焦磷酸钠或三磷酸腺苷的重酶解肌球蛋白溶液中孵育后,未见到箭头结构。特别有趣的是肌动蛋白样细丝与偶尔出现的、逐渐变细的肌球蛋白样细丝以及作为锚定点的质膜之间的结构关系。观察到线粒体和平滑内质网膜附着于肌动蛋白样细丝或陷入网络中。微管以及大多数神经丝在4℃甘油处理过程中被破坏,因此无法确定肌动蛋白样细丝与后述成分的结构关系。讨论了肌动蛋白样细丝通过化学机械转导机制在整个神经元内从合成部位到功能部位以及在几个功能部位之间进行物质运输中的作用。

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