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中性粒细胞溶酶体与吞噬体融合的早晚期的不同要求。

Different requirements for early and late phases of azurophilic granule-phagosome fusion.

机构信息

Department of Clinical Sciences, Division of Infection Medicine, BMC, B14, Lund University, SE-221 84 Lund, Sweden.

出版信息

Traffic. 2009 Dec;10(12):1881-93. doi: 10.1111/j.1600-0854.2009.00986.x. Epub 2009 Sep 14.

Abstract

Phagocytosis and killing of microorganisms are complex processes that involve tightly regulated membrane traffic events. Because many signaling molecules associate with membrane rafts and because these structures can be found on azurophilic granules, we decided to investigate raft recruitment and the signaling requirements for azurophilic granule secretion during phagosome maturation. At the site of phagocytosis of immunoglobulin G-opsonized prey in human neutrophils, we found that early secretion of azurophilic granules was both raft- and calcium-dependent. Subsequently, rafts at the phagocytic site were internalized with the prey. At the fully formed phagosome, the fusion of azurophilic granules was no longer dependent on rafts or calcium. These findings were found to be true also when using Streptococcus pyogenes bacteria as prey, and depletion of calcium affected the kinetics of bacterial intracellular survival. These findings suggest that the mechanisms for delivery of azurophilic content to nascent and sealed phagosomes, respectively, differ in their dependence on calcium and membrane rafts.

摘要

吞噬和杀死微生物是一个复杂的过程,涉及到严格调控的膜运输事件。由于许多信号分子与膜筏结合,并且这些结构可以在嗜天青颗粒上找到,我们决定研究吞噬体成熟过程中嗜天青颗粒分泌的筏募集和信号要求。在人嗜中性粒细胞吞噬 IgG 调理的猎物时,我们发现嗜天青颗粒的早期分泌既依赖于筏也依赖于钙。随后,吞噬部位的筏与猎物一起内化。在完全形成的吞噬体中,嗜天青颗粒的融合不再依赖于筏或钙。当使用化脓性链球菌作为猎物时,也发现了这些发现是正确的,并且钙的耗竭影响了细菌细胞内生存的动力学。这些发现表明,分别向新形成和密封的吞噬体输送嗜天青内容物的机制在对钙和膜筏的依赖性方面存在差异。

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