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肌球蛋白 Va 募集到致密核心分泌颗粒的分子机制。

Molecular mechanism of myosin Va recruitment to dense core secretory granules.

机构信息

Centre for Research in Biomedicine, Faculty of Health and Life Sciences, University of the West of England, Bristol, UK.

出版信息

Traffic. 2012 Jan;13(1):54-69. doi: 10.1111/j.1600-0854.2011.01301.x. Epub 2011 Nov 14.

Abstract

The brain-spliced isoform of Myosin Va (BR-MyoVa) plays an important role in the transport of dense core secretory granules (SGs) to the plasma membrane in hormone and neuropeptide-producing cells. The molecular composition of the protein complex that recruits BR-MyoVa to SGs and regulates its function has not been identified to date. We have identified interaction between SG-associated proteins granuphilin-a/b (Gran-a/b), BR-MyoVa and Rab27a, a member of the Rab family of GTPases. Gran-a/b-BR-MyoVa interaction is direct, involves regions downstream of the Rab27-binding domain, and the C-terminal part of Gran-a determines exon specificity. MyoVa and Gran-a/b are partially colocalised on SGs and disruption of Gran-a/b-BR-MyoVa binding results in a perinuclear accumulation of SGs which augments nutrient-stimulated hormone secretion in pancreatic beta-cells. These results indicate the existence of at least another binding partner of BR-MyoVa that was identified as rabphilin-3A (Rph-3A). BR-MyoVa-Rph-3A interaction is also direct and enhanced when secretion is activated. The BR-MyoVa-Rph-3A and BR-MyoVa-Gran-a/b complexes are linked to a different subset of SGs, and simultaneous inhibition of these complexes nearly completely blocks stimulated hormone release. This study demonstrates that multiple binding partners of BR-MyoVa regulate SG transport, and this molecular mechanism is universally used by neuronal, endocrine and neuroendocrine cells.

摘要

脑拼接肌球蛋白 Va(BR-MyoVa)异构体在激素和神经肽产生细胞中将致密核心分泌颗粒(SGs)运输到质膜的过程中起着重要作用。迄今为止,尚未鉴定出将 BR-MyoVa 募集到 SG 并调节其功能的蛋白质复合物的分子组成。我们已经确定了 SG 相关蛋白 granuphilin-a/b(Gran-a/b)、BR-MyoVa 和 Rab27a 之间的相互作用,Rab27a 是 GTPase Rab 家族的成员。Gran-a/b-BR-MyoVa 相互作用是直接的,涉及 Rab27 结合域下游的区域,并且 Gran-a 的 C 末端部分决定外显子特异性。MyoVa 和 Gran-a/b 在 SG 上部分共定位,并且破坏 Gran-a/b-BR-MyoVa 结合导致 SG 在核周的积累,从而增强了胰腺β细胞中营养刺激的激素分泌。这些结果表明至少存在 BR-MyoVa 的另一个结合伴侣,该伴侣被鉴定为 rabphilin-3A(Rph-3A)。BR-MyoVa-Rph-3A 相互作用也是直接的,并且在分泌被激活时增强。BR-MyoVa-Rph-3A 和 BR-MyoVa-Gran-a/b 复合物与不同的 SG 子集相关联,并且同时抑制这些复合物几乎完全阻止了刺激的激素释放。这项研究表明,BR-MyoVa 的多个结合伴侣调节 SG 运输,并且这种分子机制被神经元、内分泌和神经内分泌细胞普遍使用。

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