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静息及吞噬状态下培养巨噬细胞的质膜下微丝和微管

Subplasmalemmal microfilaments and microtubules in resting and phagocytizing cultivated macrophages.

作者信息

Reaven E P, Axline S G

出版信息

J Cell Biol. 1973 Oct;59(1):12-27. doi: 10.1083/jcb.59.1.12.

Abstract

The subplasmalemmal organization of the free and glass-attached surfaces of resting and phagocytizing cultivated macrophages were examined in an attempt to define specific membrane-associated structures related to phagocytosis. From analysis of serial thin sections of oriented cells it was found that the subplasmalemmal region of the attached cell surface has a complex microfilament and microtubule organization relative to the subplasmalemmal area of the free surface. A filamentous network composed of 40-50-A microfilaments extended for a depth of 400-600 A from the attached plasma membrane. Immediately subjacent to the filamentous network was a zone of oriented bundles of 40-50-A microfilaments and a zone of microtubules. Additional microtubules were found to extend from the plasma membrane to the interior of the cell in close association with electron-dense, channellike structures. In contrast, the free aspect of the cultivated macrophage contained only the subplasmalemmal filamentous network. However, after a phagocytic pulse with polystyrene particles (14 microm diam) microtubules and oriented filaments similar to those found on the attached surface were observed surrounding the ingested particles. The observations reported in this paper provide support for the hypothesis that microfilaments and/or microtubules play a role in the translocation of plasma membrane required for the functionally similar processes of phagocytosis and cell attachment to glass.

摘要

为了确定与吞噬作用相关的特定膜相关结构,对静息和吞噬培养巨噬细胞的游离表面和玻璃附着表面的亚膜下组织进行了检查。通过对定向细胞的连续薄切片分析发现,附着细胞表面的亚膜下区域相对于游离表面的亚膜下区域具有复杂的微丝和微管组织。由40 - 50埃的微丝组成的丝状网络从附着的质膜延伸至400 - 600埃的深度。紧挨着丝状网络下方是一个由40 - 50埃微丝组成的定向束区域和一个微管区域。还发现额外的微管从质膜延伸至细胞内部,并与电子致密的、通道状结构紧密相连。相比之下,培养巨噬细胞的游离面仅含有亚膜下丝状网络。然而,在用聚苯乙烯颗粒(直径14微米)进行吞噬脉冲后,观察到围绕摄入颗粒的微管和类似于附着表面上发现的定向细丝。本文报道的观察结果支持了这样的假设,即微丝和/或微管在吞噬作用和细胞附着于玻璃等功能相似过程所需的质膜转运中发挥作用。

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