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首页> 外文期刊>Journal of cell biology >Rings of membrane sterols surround the openings of vesicles and fenestrae, in capillary endothelium.
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Rings of membrane sterols surround the openings of vesicles and fenestrae, in capillary endothelium.

机译:膜固醇环环绕毛细血管内皮中的囊泡和窗孔的开口。

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We investigated the distribution of sterols in the cell membrane of microvascular endothelium (mouse pancreas, diaphragm, brain, heart, lung, kidney, thyroid, adrenal, and liver) with the polyene antibiotic filipin, which reportedly has binding specificity for free 3-beta-hydroxysterols. In some experiments, concomitantly, cell-surface anionic sites were detected with cationized ferritin. Vessels were perfused in situ with PBS, followed by light fixation and filipin administration for 10 to 60 min. Tissues were further processed for thin-section and freeze-fracture electron microscopy. Short exposure (10 min) to filipin-glutaraldehyde solution resulted in the initial appearance, on many areas, of rings of characteristic filipin-sterol complexes within the rim surrounding stomata of most plasmalemmal vesicles, transendothelial channels, and fenestrae. Such rings were absent from the rims of the large openings of the sinusoid endothelium (liver, adrenal), coated pits and phagocytic vacuoles. After longer exposure (30-60 min), filipin-sterol complexes labeled randomly the rest of plasma membrane (except for coated pits, and partially the interstrand areas of junctions), and also marked most plasmalemmal vesicles. These peristomal rings of sterols were displayed mostly on the P face, and, at their full development, consisted of 6-8 units around a vesicle stoma, and 10-12 units around a fenestra. At their level, the intramembranous particles and the cell surface anionic sites were virtually excluded. Peristomal rings of sterols were also detected on the plasma membrane of pericytes and smooth muscle cells of the microvascular wall, which otherwise were poorly labeled with filipin-sterol complexes as compared to endothelial plasmalemma. It is presumed that the peristomal rings of cholesterol may represent important contributors to the local transient stabilization of plasma membrane and to the phase separation between cell membrane and vesicle membrane at a certain stage of their fusion/fission process.
机译:我们研究了多烯抗生素菲律宾磷脂在微血管内皮细胞膜(小鼠胰腺,隔膜,脑,心脏,肺,肾脏,甲状腺,肾上腺和肝脏)中固醇的分布,据报道该物质对游离3-beta具有结合特异性-羟基甾醇。在一些实验中,伴随地,用阳离子化铁蛋白检测到细胞表面的阴离子位点。将血管用PBS原位灌注,然后进行固定和脂肪蛋白施用10至60分钟。将组织进一步处理以进行薄片和冷冻断裂电子显微镜检查。短时间(10分钟)暴露于菲林-戊二醛溶液会导致在大多数血浆膜囊泡,跨内皮通道和窗孔的气孔周围边缘内,特征性的菲林-甾醇复合物环在许多区域出现初始现象。肝窦内皮大开口(肝,肾上腺),包膜的凹坑和吞噬液泡的边缘没有这种环。在更长的暴露时间(30-60分钟)后,菲律宾甾醇-固醇复合物随机标记了质膜的其余部分(包被的凹坑和部分结节间区域除外),也标记了大多数血浆膜囊泡。这些固醇的围体环大部分显示在P面上,在完全发育时,由围绕囊泡气孔的6-8个单位和围绕窗孔的10-12个单位组成。在它们的水平上,实际上排除了膜内颗粒和细胞表面阴离子位点。在微血管壁的周细胞和平滑肌细胞的质膜上还检测到甾醇的封顶环,否则与内皮细胞质膜相比,它们没有被菲律宾-甾醇复合物标记。据推测,胆固醇的膜周环可能是质膜局部瞬时稳定以及在其融合/裂变过程的某个阶段细胞膜和囊泡膜之间的相分离的重要贡献者。

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