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Distribution of sterol-specific complexes in a continually shearing region of a plasma membrane and at procaryotic-eucaryotic cell junctions

机译:固醇特异性复合物在质膜的连续剪切区域和原核-真核细胞交界处的分布

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摘要

A narrow zone of plasma membrane between the head and body of a protozoan from termites undergoes continual in-plane shear because the head rotates continuously in the same direction relative to the cell body (Tamm, S.L., and S. Tamm, 1974, Proc. Natl. Acad. Sci. USA 71:4589- 4593). Using filipin and digitonin as cytochemical probes for cholesterol and related 3-beta-hydroxysterols, we found a high level of sterol-specific complexes, visible as membrane lesions in thin sections, in both shearing and nonshearing regions of the membrane, indicating no difference in sterol content. This confirmed previous observations that any region of the fluid membrane can undergo shear, but that this occurs only at certain locations due to cell geometry and proximity to rotating cytoskeletal structures. Filipin and digitonin did not disrupt the plasma membrane at the junctions with ectosymbiotic rod and fusiform bacteria (i.e., membrane pockets and ridges). However, pepsin degradation of dense material coating the junctional membranes resulted in a positive response of these regions to filipin. Fluorescence microscopy revealed a bright halo around each rod bacterium, due to filipin-sterol binding in the sides of the membrane pockets, but no fluorescence at the bottom of the pockets; the same fluorescence pattern was found in pepsin-treated cells despite the presence of sterols throughout the pocket membrane, as shown by electron microscopy. These findings indicate that (a) regional constraints may restrict the ability of filipin to interact with sterols or form visible membrane lesions, and (b) a negative response to filipin, assayed by either electron or fluorescence microscopy, is not sufficient to demonstrate low membrane sterol concentration, particularly in membrane domains characterized by closely associated proteins.
机译:由于白头相对于细胞体以相同方向连续旋转,因此,白蚁原生动物的头与主体之间的质膜狭窄区域会受到连续的平面内剪切作用(Tamm,SL,and S. Tamm,1974,Proc。 Natl.Acad.Sci.USA 71:4589-4593)。使用磷脂和洋地黄皂苷作为胆固醇和相关的3-β-羟基甾醇的细胞化学探针,我们发现高水平的固醇特异性复合物,在薄膜的剪切和非剪切区域薄薄的部分可见为膜损伤,表明在膜的无差异固醇含量。这证实了先前的观察结果,即流体膜的任何区域都可能受到剪切作用,但是由于细胞的几何形状以及与旋转的细胞骨架结构的接近,这种剪切仅在某些位置发生。菲律宾和洋地黄皂苷不会破坏与共生杆和梭形细菌(即膜袋和脊)交界处的质膜。然而,胃蛋白酶降解覆盖连接膜的致密材料导致这些区域对菲律宾蛋白的阳性反应。荧光显微镜检查结果表明,由于膜袋侧面的菲脂固醇结合,每个杆状细菌周围都有明亮的光晕,但袋底部没有荧光。电子显微镜显示,尽管在整个口袋膜中都存在固醇,但在胃蛋白酶处理的细胞中发现了相同的荧光模式。这些发现表明:(a)区域限制可能会限制菲律宾血脂与固醇相互作用或形成可见膜损伤的能力,并且(b)通过电子或荧光显微镜检测到的对菲律宾血球的阴性反应不足以证明低膜固醇浓度,特别是在以紧密相关的蛋白质为特征的膜结构域中。

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