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豚鼠、大鼠和小鼠派尔集合淋巴结中M细胞膜的结构特征及胆固醇分布

Structural features of and cholesterol distribution in M-cell membranes in guinea pig, rat, and mouse Peyer's patches.

作者信息

Madara J L, Bye W A, Trier J S

出版信息

Gastroenterology. 1984 Nov;87(5):1091-103.

PMID:6479532
Abstract

Evidence suggests that M cells, which are antigen-sampling epithelial cells that overlie the domes of Peyer's patches, have an apical plasma membrane that differs from that of absorptive cells. We examined the structural features of rat, mouse, and guinea pig M-cell apical membranes and compared them with those of dome and villus absorptive cell apical membranes using electron microscopy of thin sections and freeze-fracture replicas. We also determined the distribution of morphologically detectable cholesterol in M-cell plasma and intracellular membranes in dome epithelium exposed to the polyene antibiotic, filipin. The areal density of P-face intramembrane particles was significantly less on M-cell microvilli than on microvilli of dome absorptive cells and villus absorptive cells. Areal densities of E-face intramembrane particles were similar on M-cell and absorptive-cell microvilli. M-cell apical plasma membranes were rich in cholesterol, displaying numerous filipin-induced membrane lesions in thin sections and freeze-fracture replicas. In contrast, apical membrane endocytic pits and coated vesicles in M cells failed to show filipin-induced membrane lesions. These findings suggest that, compared with the apical membranes of absorptive cells, those of M cells have a low protein to lipid ratio and an abundance of morphologically detectable cholesterol except in domains involved in endocytosis. Additionally, a subpopulation of dome epithelial cells displayed distinctive tight junctions with high strand counts and unusual depth. Although the cell type associated with these modified tight junctions could not be identified with certainty, their interspecies frequency paralleled the interspecies frequency of M cells in dome epithelium. These expanded tight junctions may result from physical tension caused by epithelial shape changes induced by intraepithelial lymphoid trafficking or, alternatively, may help buttress M cells that have attenuated cytoplasmic processes due to the presence of central hollows.

摘要

有证据表明,M细胞是位于派尔集合淋巴结圆顶上方的抗原采样上皮细胞,其顶端质膜与吸收细胞的顶端质膜不同。我们研究了大鼠、小鼠和豚鼠M细胞顶端膜的结构特征,并使用超薄切片电子显微镜和冷冻蚀刻复制品将它们与圆顶和绒毛吸收细胞顶端膜的结构特征进行了比较。我们还确定了多烯抗生素制霉菌素处理的圆顶上皮中,M细胞质膜和内膜中形态学可检测胆固醇的分布。M细胞微绒毛上P面膜内颗粒的面密度显著低于圆顶吸收细胞和绒毛吸收细胞微绒毛上的面密度。M细胞和吸收细胞微绒毛上E面膜内颗粒的面密度相似。M细胞顶端质膜富含胆固醇,在超薄切片和冷冻蚀刻复制品中显示出大量制霉菌素诱导的膜损伤。相比之下,M细胞顶端膜的内吞小窝和被膜小泡未显示制霉菌素诱导的膜损伤。这些发现表明,与吸收细胞的顶端膜相比,M细胞的顶端膜具有低蛋白/脂质比,并且除了参与内吞作用的区域外,有大量形态学可检测的胆固醇。此外,圆顶上皮细胞的一个亚群显示出具有高链数和异常深度的独特紧密连接。尽管与这些修饰紧密连接相关的细胞类型尚不能确定,但它们在种间的频率与圆顶上皮中M细胞的种间频率平行。这些扩展的紧密连接可能是由上皮内淋巴运输引起的上皮形状变化所导致的物理张力造成的,或者,它们可能有助于支撑由于中央空洞的存在而使细胞质突起减弱的M细胞。

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