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人中性粒细胞中细胞质颗粒与微管的相互作用。

Interactions of cytoplasmic granules with microtubules in human neutrophils.

作者信息

Rothwell S W, Nath J, Wright D G

机构信息

Department of Hematology, Walter Reed Army Institute of Research, Washington, DC 20307-5100.

出版信息

J Cell Biol. 1989 Jun;108(6):2313-26. doi: 10.1083/jcb.108.6.2313.

Abstract

Ultrastructural and functional studies of degranulation responses by human neutrophils have suggested that microtubules (MTs) have a role in the intracellular transport of neutrophil granules. We have found that granule-MT complexes can be isolated from disrupted taxol-treated (1.0 microM) neutrophils, visualized by electron microscopy, and quantified in terms of granules per MT length. After incubation of neutrophils with the chemotactic peptide N-formyl-methionyl-leucyl-phenylalanine (fMLP), granule-MT complex formation was found to be increased two- to threefold. Enhanced binding of granules to MTs was detectable within 30 s of fMLP stimulation and was dependent on the concentration of fMLP. Incubation of cells with dibutyryl cAMP inhibited this fMLP-stimulated granule-MT complex formation in a dose-responsive fashion. These granule-MT interactions could be reproduced in a cell-free system with neutrophil granules isolated by density gradient centrifugation and MTs polymerized from phosphocellulose-purified tubulin. Furthermore, reconstituted granule-MT interactions were found to be modulated by ATPase inhibitors. Sodium orthovanadate increased granule-MT interactions in a concentration-dependent manner, while AMP-PNP, a nonhydrolyzable ATP analogue, and N-ethylmaleimide decreased or eliminated these interactions. In addition, we found that a MT-activated ATPase could be recovered from intact neutrophil granules by salt extraction, and that extracts enriched in this ATPase contained a polypeptide of between 115 and 120 kD which binds ATP and is immunologically related to kinesin. These studies demonstrate that cytoplasmic granules interact with MTs in human neutrophils in a regulated stimulus-responsive manner, and they suggest that such interactions may involve an MT-based, ATPase-dependent, vesicle translocation system as has been demonstrated in other types of cells.

摘要

对人类中性粒细胞脱颗粒反应的超微结构和功能研究表明,微管(MTs)在中性粒细胞颗粒的细胞内运输中起作用。我们发现,颗粒-MT复合物可从经紫杉醇处理(1.0微摩尔)的破碎中性粒细胞中分离出来,通过电子显微镜观察,并以每MT长度的颗粒数量进行定量。在用趋化肽N-甲酰甲硫氨酰-亮氨酰-苯丙氨酸(fMLP)孵育中性粒细胞后,发现颗粒-MT复合物的形成增加了两到三倍。在fMLP刺激后30秒内可检测到颗粒与MTs的结合增强,且依赖于fMLP的浓度。用二丁酰cAMP孵育细胞以剂量反应方式抑制了这种fMLP刺激的颗粒-MT复合物的形成。这些颗粒-MT相互作用可以在无细胞系统中重现,该系统使用通过密度梯度离心分离的中性粒细胞颗粒和由磷酸纤维素纯化的微管蛋白聚合而成的MTs。此外,发现重组的颗粒-MT相互作用受ATP酶抑制剂调节。正钒酸钠以浓度依赖的方式增加颗粒-MT相互作用,而非水解性ATP类似物AMP-PNP和N-乙基马来酰亚胺则减少或消除了这些相互作用。此外,我们发现一种MT激活的ATP酶可以通过盐提取从完整的中性粒细胞颗粒中回收,并且富含这种ATP酶的提取物含有一种115至120kD之间的多肽,该多肽结合ATP且与驱动蛋白有免疫相关性。这些研究表明,细胞质颗粒在人类中性粒细胞中以受调节的刺激反应方式与MTs相互作用,并且表明这种相互作用可能涉及一种基于MT的、ATP酶依赖性的囊泡转运系统,正如在其他类型细胞中所证明的那样。

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