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兔多形核白细胞的特异性和嗜天青颗粒。I. 膜和内容物亚组分的分离与特性分析

Specific and azurophilic granules from rabbit polymorphonuclear leukocytes. I. Isolation and characterization of membrane and content subfractions.

作者信息

Brown W J, Shannon W A, Snell W J

出版信息

J Cell Biol. 1983 Apr;96(4):1030-9. doi: 10.1083/jcb.96.4.1030.

Abstract

The specific and azurophilic granules of rabbit polymorphonuclear heterophils (PMNs) have been isolated and fractionated into membrane and extractable subfractions. Analysis by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS PAGE) revealed several features of the protein composition of the two granules: (a) Whereas each type of granule had 40-60 proteins separable on one-dimensional gradient gels, few of the proteins were common to both granules. (b) The proteins of the extractable fractions (which comprised approximately 98% of the total granule protein) of each granule were distinct from the proteins of the membrane fractions (which comprised approximately 2% of the total granule protein). (c) The extractable proteins co-migrated with those collected from the medium of ionophore-treated, degranulating PMNs and therefore were defined as content proteins. These results were confirmed by radiolabeling studies. Lactoperoxidase-catalyzed iodination of intact granules did not label the content proteins but did label proteins that co-migrated with major granule membrane proteins. Moreover, disruption of the granules before iodination led to labeling of both content and membrane proteins. We conclude that the membranes of specific and azurophilic granules, which arise from different faces of the Golgi complex, are composed of unique sets of membrane proteins some of which are exposed on the cytoplasmic face of the granules.

摘要

兔多形核异嗜性粒细胞(PMNs)的特异性颗粒和嗜天青颗粒已被分离,并分级为膜亚组分和可提取亚组分。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)分析揭示了两种颗粒蛋白质组成的几个特征:(a)虽然每种类型的颗粒在一维梯度凝胶上有40-60种可分离的蛋白质,但两种颗粒共有的蛋白质很少。(b)每种颗粒的可提取部分(约占颗粒总蛋白的98%)的蛋白质与膜部分(约占颗粒总蛋白的2%)的蛋白质不同。(c)可提取的蛋白质与从离子载体处理的脱颗粒PMNs培养基中收集的蛋白质共迁移,因此被定义为内容物蛋白质。这些结果通过放射性标记研究得到证实。乳过氧化物酶催化完整颗粒的碘化未标记内容物蛋白质,但标记了与主要颗粒膜蛋白共迁移的蛋白质。此外,碘化前颗粒的破坏导致内容物和膜蛋白都被标记。我们得出结论,源自高尔基体复合体不同面的特异性颗粒和嗜天青颗粒的膜由独特的膜蛋白组组成,其中一些暴露在颗粒的细胞质面上。

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