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Rab27a/Mlph/MyoVa 和 Rab27b/Munc13-4 在肥大细胞分泌中发挥独特且相反的作用。

Distinct and opposing roles for Rab27a/Mlph/MyoVa and Rab27b/Munc13-4 in mast cell secretion.

机构信息

Molecular Medicine, National Heart and Lung Institute, Imperial College London, London, UK.

出版信息

FEBS J. 2013 Feb;280(3):892-903. doi: 10.1111/febs.12081. Epub 2013 Jan 2.

Abstract

Mediator release from mast cells is a critical step in allergic and inflammatory disease. However, the processes regulating the latter stages of granule release are yet to be fully understood. Rab27 small GTPases regulate release of secretory lysosomes in a variety of cells, including mast cell granules. In the present study, using murine bone marrow-derived mast cells (BMMC) from Rab27-deficient mutant mice, we found that, in contrast to Rab27b, Rab27a primarily plays an inhibitory role in regulating degranulation. Immunofluorescence analysis revealed that resting Rab27a-deficient (ashen) BMMCs display abnormal cortical F-actin distribution. Actin disassembly prior to IgE cross-linking increased wild-type BMMC secretion to ashen levels, suggesting that changes in the integrity of cortical F-actin underlie the ashen phenotype. Comparison of the secretory impairment of Rab27b knockout and Rab27a/b double knockout BMMCs highlighted a secondary positive role for Rab27a in enhancing degranulation. Rab27 is known to interact with actin via its effectors melanophilin (Mlph) and myosin Va (MyoVa) in other cell types. To better understand the differing roles of Rab27 proteins, we analysed the secretory phenotype of BMMCs derived from mice lacking Rab27 effector proteins. These experiments revealed that the phenotype of BMMCs deficient in Mlph (leaden) and BMMCs deficient in MyoVa (dilute) resembles the hyper-secretion of ashen BMMCs, while Munc13-4-deficient (jinx) BMMCs phenocopy the Rab27b knockout and double Rab27a/b knockout secretory impairment. We conclude that Rab27a and Rab27b regulate distinct steps in the BMMC degranulation pathway, with Rab27a/Mlph/MyoVa regulating cortical actin stability upstream of Rab27a/b/Munc13-4-dependent granule exocytosis.

摘要

肥大细胞脱颗粒是过敏和炎症性疾病的关键步骤。然而,调节颗粒释放后期阶段的过程尚未完全理解。Rab27 小分子 GTP 酶调节各种细胞包括肥大细胞颗粒中分泌溶酶体的释放。在本研究中,我们使用来自 Rab27 缺陷突变鼠的骨髓来源的肥大细胞 (BMMC),发现与 Rab27b 相反,Rab27a 主要在调节脱颗粒中起抑制作用。免疫荧光分析显示,静止状态的 Rab27a 缺陷(ashen)BMMC 显示异常皮质 F-肌动蛋白分布。在 IgE 交联之前,肌动蛋白解聚将野生型 BMMC 的分泌增加到 ashen 水平,这表明皮质 F-肌动蛋白完整性的变化是 ashen 表型的基础。Rab27b 敲除和 Rab27a/b 双敲除 BMMC 的分泌缺陷比较突出了 Rab27a 在增强脱颗粒中的次要正作用。Rab27 在其他细胞类型中通过其效应物黑素磷蛋白 (Mlph) 和肌球蛋白 Va (MyoVa)与肌动蛋白相互作用。为了更好地理解 Rab27 蛋白的不同作用,我们分析了来自缺乏 Rab27 效应蛋白的小鼠的 BMMC 的分泌表型。这些实验表明,缺乏 Mlph (leaden)的 BMMC 和缺乏 MyoVa (dilute)的 BMMC 的表型类似于 ashen BMMC 的过度分泌,而缺乏 Munc13-4 (jinx)的 BMMC 则类似于 Rab27b 敲除和双 Rab27a/b 敲除的分泌缺陷。我们得出结论,Rab27a 和 Rab27b 调节 BMMC 脱颗粒途径中的不同步骤,Rab27a/Mlph/MyoVa 调节 Rab27a/b/Munc13-4 依赖性颗粒胞吐作用上游的皮质肌动蛋白稳定性。

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