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吞噬作用和液相胞饮作用。

Phagocytosis and fluid-phase pinocytosis.

作者信息

Cohn Z A, Steinman R M

出版信息

Ciba Found Symp. 1982(92):15-34. doi: 10.1002/9780470720745.ch2.

Abstract

The generation, flow, directionality and fusion of phagocytic and fluid-phase pinocytic vesicles in cultured macrophages and fibroblasts are reviewed. Specific plasma membrane (PM) receptors, receptor mobility, contractile cytoplasmic elements and lipid composition of the PM serve to regulate the flow of large phagosomes into the perinuclear zone. Fluid-phase vesicles are constitutively generated and carry large quantities of PM, fluid and solutes into the cytoplasm. Quantitative information is cited on the rates of vesicular generation, fusion with other members of the vacuolar system, fluid and solute uptake, and digestion and solute release. The nature and composition of fluid-phase vesicles, phagocytic vacuoles and PM are compared. Once interiorized, PM and its component polypeptides rapidly cycle back to the cell surface. The flow rates of both the centrifugal and the centripetal compartments as well as the fate of a minor degradation pool are illustrated and compared to the turnover of individual membrane polypeptides. Implications of membrane flow for cell shape, motility and new PM insertion are discussed.

摘要

本文综述了培养的巨噬细胞和成纤维细胞中吞噬性和液相胞饮小泡的生成、流动、方向性及融合情况。特定的质膜(PM)受体、受体流动性、收缩性细胞质成分以及质膜的脂质组成有助于调节大型吞噬体向核周区的流动。液相小泡持续生成,并将大量质膜、液体和溶质带入细胞质。文中引用了关于小泡生成速率、与液泡系统其他成员融合、液体和溶质摄取、消化及溶质释放的定量信息。比较了液相小泡、吞噬泡和质膜的性质及组成。一旦内化,质膜及其组成多肽会迅速循环回到细胞表面。阐述并比较了离心和向心区室的流速以及一个较小降解池的命运,还与单个膜多肽的周转情况进行了对比。讨论了膜流对细胞形状、运动性及新质膜插入的影响。

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