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Neutrophil plasma membranes. I. High-yield purification of human neutrophil plasma membrane vesicles by nitrogen cavitation and differential centrifugation

机译:中性粒细胞质膜。一,通过空化和离心分离法高效纯化人中性粒细胞质膜囊泡

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摘要

Neutrophil chemotaxis, phagocytosis, and oxygen-dependent microbicidal activity are initiated by interactions of stimuli with the plasma membrane. However, difficulties in neutrophil plasma membrane isolation have precluded studies on the precise structure or function of this cellular component. In this paper, a method is described for the isolation of representative human neutrophil plasma membrane vesicles, using nitrogen cavitation for cell disruption and a combination of differential centrifugation and equilibrium ultracentrifugation in Dextran gradients for membrane fractionation. Multiple biochemical markers and galactose oxidase-tritiated sodium borohydride surface labeling were employed to follow the yield, purity, and distribution of plasma membranes, nuclei, lysosomes, endoplasmic reticulum, mitochondria, and cytosol. According to these markers, neutrophil plasma membranes were exposed to minimal lysosomal hydrolytic enzymes and could be isolated free of other subcellular organelles. In contrast, disruption of neutrophils by mechanical homogenization resulted in > 20% lysosomal rupture and significant plasma membrane proteolysis. Electron microscopy demonstrated that plasma membranes isolated after nitrogen cavitation appeared to be sealed vesicles with striking homogeneity.
机译:中性粒细胞趋化性,吞噬作用和氧依赖性杀微生物活性是通过刺激与质膜的相互作用而引发的。然而,嗜中性白细胞质膜分离的困难已排除了对该细胞组分的精确结构或功能的研究。在本文中,描述了一种用于分离代表性人嗜中性白细胞质膜囊泡的方法,该方法使用了空化作用来破坏细胞,并在葡聚糖梯度中结合差速离心和平衡超速离心来进行膜分离。采用多种生化标记和半乳糖氧化酶tri化的硼氢化钠表面标记,以追踪质膜,核,溶酶体,内质网,线粒体和细胞质的产量,纯度和分布。根据这些标志物,嗜中性粒细胞的质膜暴露于最少的溶酶体水解酶中,可以分离出其他亚细胞器。相反,通过机械均质化破坏嗜中性白细胞会导致> 20%的溶酶体破裂和明显的质膜蛋白水解。电子显微镜显示,氮气空化后分离出的质膜似乎是具有明显均质性的密封囊泡。

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