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超排卵大鼠黄体细胞中的独特微管。

Unique microtubules in luteal cells from superovulated rats.

作者信息

Reaven E, Jensen C G, Spicher M, Azhar S

出版信息

J Ultrastruct Res. 1983 Jun;83(3):284-95. doi: 10.1016/s0022-5320(83)90135-1.

Abstract

Luteal cells of immature female rats treated with gonadotropins contain microtubules with a number of interesting features. Many of the microtubules of these cells are arranged in bundles in which they are separated one from another by strands of material (i-MT bands) of unknown composition. The microtubules within the bundles assume a hexagonal packing pattern with i-MT bands between any two microtubules. The bundle microtubules and their i-MT bands are further connected via crosslinking filaments: pattern obtained from densitometer scans (measuring the arrangement of the crosslinking filaments) suggest that the filaments may represent microtubule-associated proteins. The complex arrangement of the microtubules within a bundle does not appear to extend for the entire length of the individual microtubules, and occasionally one sees profiles of single microtubules fanning out from the ends of the bundle: whether the same microtubules are regrouped at some other point in the cell is not known. Structures similar to the i-MT band and the crosslinking filaments have also been observed connecting microtubules to segments of the luteal cell plasma membrane: in these instances the i-MT-like band is found between the longitudinally sectioned microtubule and the membrane, with filaments connecting the two structures via the intermediate band. It is of interest that the microtubules of these luteal cells are not sensitive to treatment with antimicrotubule drugs and we suggest that the complex bundling arrangement provides their unusual stability.

摘要

用促性腺激素处理的未成熟雌性大鼠的黄体细胞含有具有许多有趣特征的微管。这些细胞的许多微管成束排列,在束中它们被未知成分的物质链(i-MT带)彼此分隔开。束内的微管呈现六边形排列模式,任意两根微管之间都有i-MT带。束状微管及其i-MT带通过交联丝进一步连接:密度计扫描获得的模式(测量交联丝的排列)表明这些丝可能代表微管相关蛋白。束内微管的复杂排列似乎并未延伸至单个微管的整个长度,偶尔会看到单根微管的轮廓从束的末端呈扇形散开:这些微管是否在细胞的其他位置重新组合尚不清楚。还观察到类似于i-MT带和交联丝的结构将微管与黄体细胞质膜的片段相连:在这些情况下,在纵向切片的微管和膜之间发现了类似i-MT的带,细丝通过中间带连接这两个结构。有趣的是,这些黄体细胞的微管对抗微管药物的处理不敏感,我们认为这种复杂的成束排列赋予了它们异常的稳定性。

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