Cazares Victor A, Subramani Arasakumar, Saldate Johnny J, Hoerauf Widmann, Stuenkel Edward L
Department of Molecular & Integrative Physiology, University of Michigan, Ann Arbor, MI, 48109, USA; Neuroscience Graduate Program, University of Michigan, Ann Arbor, MI, 48109, USA.
Traffic. 2014 Sep;15(9):997-1015. doi: 10.1111/tra.12182. Epub 2014 Jun 26.
Rab GTPases associated with insulin-containing secretory granules (SGs) are key in targeting, docking and assembly of molecular complexes governing pancreatic β-cell exocytosis. Four Rab3 isoforms along with Rab27A are associated with insulin granules, yet elucidation of the distinct roles of these Rab families on exocytosis remains unclear. To define specific actions of these Rab families we employ Rab3GAP and/or EPI64A GTPase-activating protein overexpression in β-cells from wild-type or Ashen mice to selectively transit the entire Rab3 family or Rab27A to a GDP-bound state. Ashen mice carry a spontaneous mutation that eliminates Rab27A expression. Using membrane capacitance measurements we find that GTP/GDP nucleotide cycling of Rab27A is essential for generation of the functionally defined immediately releasable pool (IRP) and central to regulating the size of the readily releasable pool (RRP). By comparison, nucleotide cycling of Rab3 GTPases, but not of Rab27A, is essential for a kinetically rapid filling of the RRP with SGs. Aside from these distinct functions, Rab3 and Rab27A GTPases demonstrate considerable functional overlap in building the readily releasable granule pool. Hence, while Rab3 and Rab27A cooperate to generate release-ready SGs in β-cells, they also direct unique kinetic and functional properties of the exocytotic pathway.
与含胰岛素分泌颗粒(SGs)相关的Rab GTP酶在调控胰腺β细胞胞吐作用的分子复合物的靶向、对接和组装过程中起着关键作用。四种Rab3亚型以及Rab27A与胰岛素颗粒相关,但这些Rab家族在胞吐作用中各自独特作用的阐释仍不明确。为了确定这些Rab家族的具体作用,我们在野生型或Ashen小鼠的β细胞中过表达Rab3GAP和/或EPI64A GTP酶激活蛋白,以选择性地使整个Rab3家族或Rab27A转变为GDP结合状态。Ashen小鼠携带一种自发突变,可消除Rab27A的表达。通过膜电容测量,我们发现Rab27A的GTP/GDP核苷酸循环对于功能上定义的即时释放池(IRP)的产生至关重要,并且对于调节易释放池(RRP)的大小至关重要。相比之下,Rab3 GTP酶的核苷酸循环而非Rab27A的核苷酸循环对于RRP被SGs快速动力学填充至关重要。除了这些不同的功能外,Rab3和Rab27A GTP酶在构建易释放颗粒池中表现出相当大的功能重叠。因此,虽然Rab3和Rab27A在β细胞中协同作用以产生准备好释放的SGs,但它们也指导胞吐途径独特的动力学和功能特性。