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低分子量GTP结合蛋白在中性粒细胞分泌颗粒中的区室化

Compartmentalization of low molecular mass GTP-binding proteins among neutrophil secretory granules.

作者信息

Dexter D, Rubins J B, Manning E C, Khachatrian L, Dickey B F

机构信息

Pulmonary Center, Boston University School of Medicine, MA 02118.

出版信息

J Immunol. 1990 Sep 15;145(6):1845-50.

PMID:2118155
Abstract

Neutrophils contain several distinct classes of secretory granules that may sequentially fuse with the phagosome after the ingestion of particulates, or that may be differentially exocytosed after cellular activation with soluble stimuli. The exocytosis of neutrophil secretory granules has been shown to be GTP-dependent at a step distal to activation of the transductional G proteins. Inasmuch as ras-related low molecular mass GTP-binding proteins have been shown to play regulatory roles in vesicle sorting in the secretory pathway in yeast, the differential mobilization of neutrophil granules might be regulated by distinct GTP-binding proteins. We therefore explored the distribution and identity of low molecular mass GTP-binding proteins in neutrophil secretory granules and other subcellular fractions. After lysis by nitrogen cavitation, four highly resolved fractions were harvested from discontinuous Percoll gradients: a microsomal fraction enriched for plasma membranes, specific granules, primary granules, and cytosol. At least seven bands of distinct Mr were detected by probing protein blots with [32P]GTP. Microsomes contained a prominent GTP-binding band at 26 kDa and weaker ones at 24 and 22.5 kDa; specific granules contained bands at 26, 24, 22, and 20 kDa; primary granules showed bands at 24 and 23 kDa; cytosol showed strong bands at 23.5 and 19 kDa and a weak band at 26 kDa. Antiserum against ADP-ribosylation factor reacted strongly with the 19-kDa band in cytosol but with none of the membrane fractions. None of these proteins was recognized by antibodies against ras or against Sec4p. Botulinum exoenzyme C3 labeled bands of molecular mass 20 and 21 kDa in cytosol and microsomes that have distinct mobilities from all the blotted [32P]GTP-binding proteins. The highly compartmentalized subcellular distribution of the blotted [32P]GTP-binding proteins in neutrophils is consistent with a regulatory role in the differential mobilization of granule compartments during cellular activation.

摘要

中性粒细胞含有几种不同类型的分泌颗粒,这些颗粒在摄取颗粒物质后可能会依次与吞噬体融合,或者在受到可溶性刺激而被细胞激活后可能会有差异地胞吐。中性粒细胞分泌颗粒的胞吐作用在转导G蛋白激活后的一个步骤中已被证明是依赖GTP的。由于已表明与ras相关的低分子量GTP结合蛋白在酵母分泌途径中的囊泡分选过程中发挥调节作用,中性粒细胞颗粒的差异动员可能受不同的GTP结合蛋白调控。因此,我们探究了低分子量GTP结合蛋白在中性粒细胞分泌颗粒及其他亚细胞组分中的分布和特性。通过氮空化裂解后,从不连续的Percoll梯度中收获了四个高度分离的组分:富含质膜、特异性颗粒、初级颗粒和胞质溶胶的微粒体组分。用[32P]GTP探测蛋白质印迹可检测到至少七条不同分子量的条带。微粒体含有一条明显的26 kDa的GTP结合条带以及较弱的24 kDa和22.5 kDa条带;特异性颗粒含有26 kDa、24 kDa、22 kDa和20 kDa条带;初级颗粒显示出24 kDa和23 kDa条带;胞质溶胶显示出强的23.5 kDa和19 kDa条带以及一条弱的26 kDa条带。抗ADP-核糖基化因子的抗血清与胞质溶胶中的19 kDa条带强烈反应,但与任何膜组分均无反应。这些蛋白均未被抗ras或抗Sec4p的抗体识别。肉毒杆菌外毒素C3标记了胞质溶胶和微粒体中分子量为20 kDa和21 kDa的条带,其迁移率与所有印迹的[32P]GTP结合蛋白均不同。中性粒细胞中印迹的[32P]GTP结合蛋白高度分隔的亚细胞分布与细胞激活过程中颗粒区室差异动员的调节作用一致。

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