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培养巨噬细胞内吞作用的极化及受体拓扑结构

Polarization of endocytosis and receptor topography on cultured macrophages.

作者信息

Walter R J, Berlin R D, Pfeiffer J R, Oliver J M

出版信息

J Cell Biol. 1980 Jul;86(1):199-211. doi: 10.1083/jcb.86.1.199.

Abstract

In the 1774.2 macrophage cell line, microtubule disassembly by colchicine causes the polarization of membrane functions ane structure. Colchicine-treated cells develop a bulge or protuberance that is bordered by microvillous membrane. The protuberance is the site of concanavalin A cap formation. The fluid pinocytosis of horseradish peroxidase and of fluorescein- and rhodamine-conjugated high molecular-weight dextrans, the adsorptive pinocytosis of concanavalin A, and the concentration and phagocytosis at 37 degrees C of a range of phagocytic particles (IgG- and complement-opsonized erythrocytes, complement-opsonized zymosan, latex shpres, albumin-stabilized oil droplets) are all similarly restricted to the protuberance. A reduction in the rate of dextran pinocytosis, determined by fluorimetry, and reductions in phagocytic rates for oil emulsion and IgG-opsonized erythrocytes accompany the polarization of endocytic activity in colchicine-trated 1774.2 macrophages. Membrane receptors for phagocytic particles are not confined to the protuberance but rather may display their own unique topographical asymmetry. The inherent topography of receptors was inferred from particle distribution under conditions that limit particle-receptor redistribution (after labeling at 4 degrees C or a very brief incubation at 37 degrees C). Under these restrictive conditions, latex binding sites were detected over the whole membrane whereas receptors for IgG-opsonized erythrocytes, aggregated IgG, complement-opsonized erythrocytes, and complement-opsonized zymosan were excluded from the protuberance. Thus, functional (endocytosis) and structural (inherent receptor distribution) analyses of membrane topography define different patterns of asymmetry in protuberant cells. The asymmetry induced in 1774.2 macrophages by colchicine is highly analogous to the functional and structural polarity of epithelial cells. Exploration of this analogy may provide insight into the development of polarized epithelia and, more generally, into mechanisms by which specialized areas of membrane are established.

摘要

在1774.2巨噬细胞系中,秋水仙碱导致微管解聚,进而引起膜功能和结构的极化。经秋水仙碱处理的细胞会形成一个由微绒毛膜界定的凸起或突出物。该突出物是伴刀豆球蛋白A帽形成的部位。辣根过氧化物酶以及荧光素和罗丹明偶联的高分子量葡聚糖的液相胞饮作用、伴刀豆球蛋白A的吸附胞饮作用,以及在37℃下一系列吞噬颗粒(免疫球蛋白G和补体调理的红细胞、补体调理的酵母聚糖、乳胶珠、白蛋白稳定的油滴)的聚集和吞噬作用,都同样局限于突出物。通过荧光测定法测定的葡聚糖胞饮作用速率的降低,以及油乳剂和免疫球蛋白G调理的红细胞吞噬速率的降低,伴随着秋水仙碱处理的1774.2巨噬细胞内吞活性的极化。吞噬颗粒的膜受体并不局限于突出物,而是可能呈现出自身独特的拓扑不对称性。受体的固有拓扑结构是在限制颗粒 - 受体重新分布的条件下(在4℃标记后或在37℃下非常短暂的孵育后)根据颗粒分布推断出来的。在这些限制条件下,在整个膜上都检测到乳胶结合位点,而免疫球蛋白G调理的红细胞、聚集的免疫球蛋白G补体调理的红细胞和补体调理的酵母聚糖的受体则被排除在突出物之外。因此,对膜拓扑结构的功能(内吞作用)和结构(固有受体分布)分析定义了突出细胞中不同的不对称模式。秋水仙碱在1774.2巨噬细胞中诱导的不对称性与上皮细胞的功能和结构极性高度相似。对这种相似性的探索可能有助于深入了解极化上皮细胞的发育,更广泛地说,有助于深入了解建立膜特殊区域的机制。

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