首页> 外文期刊>The biochemical journal >Two Rab proteins, vesicle-associated membrane protein 2 (VAMP-2) and secretory carrier membrane proteins (SCAMPs), are present on immunoisolated parietal cell tubulovesicles
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Two Rab proteins, vesicle-associated membrane protein 2 (VAMP-2) and secretory carrier membrane proteins (SCAMPs), are present on immunoisolated parietal cell tubulovesicles

机译:免疫分离的壁细胞微管小泡上存在两种Rab蛋白,即囊泡相关膜蛋白2(VAMP-2)和分泌性载体膜蛋白(SCAMP)。

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pThe tubulovesicles of gastric parietal cells sequester Hsup+/sup/Ksup+/sup-ATPase molecules within resting parietal cells. Stimulation of parietal cell secretion elicits delivery of intracellular Hsup+/sup/Ksup+/sup-ATPase to the apically oriented secretory canaliculus. Previous investigations have suggested that this process requires the regulated fusion of intracellular tubulovesicles with the canalicular target membrane. We have sought to investigate the presence of critical putative regulators of vesicle fusion on immunoisolated gastric parietal cell tubulovesicles. Highly purified tubulovesicles were prepared by gradient fractionation and immunoisolation on magnetic beads coated with monoclonal antibodies against the α subunit of Hsup+/sup/Ksup+/sup-ATPase. Western blot analysis revealed the presence of Rab11, Rab25, vesicle-associated membrane protein 2 (VAMP-2) and secretory carrier membrane proteins (SCAMPs) on immunoisolated vesicles. The same cohort of proteins was recovered on vesicles immunoisolated with monoclonal antibodies against SCAMPs and VAMP-2. In contrast, whereas immunoreactivities for syntaxin 1A/1B and synaptosome-associated protein (SNAP-25) were present in gradient-isolated vesicles, none of the immunoreactivity was associated with immunoisolated vesicles. The observation of VAMP-2 and two Rab proteins on immunoisolated Hsup+/sup/Ksup+/sup-ATPase-containing tubulovesicles supports the role for tubulovesicles in a regulated vesicle fusion process. In addition, the presence of SCAMPs along with Rab11 and Rab25 implicates the tubulovesicles as a critical apical recycling vesicle population./p
机译:>胃壁细胞的微管小泡螯合静息壁细胞内的H + / K + -ATPase分子。刺激壁细胞分泌引起细胞内H + / K + -ATPase传递至根尖定向的分泌小管。先前的研究表明,该过程需要细胞内微管小泡与小管靶膜的受控融合。我们试图研究在免疫隔离的胃壁细胞微管小泡上囊泡融合的关键假定调节剂的存在。通过梯度分级分离和在磁珠上制备高纯度的微管小球,磁珠上涂有针对H + / K + -ATPase的α亚基的单克隆抗体。蛋白质印迹分析显示免疫隔离的囊泡上存在Rab11,Rab25,囊泡相关膜蛋白2(VAMP-2)和分泌性载体膜蛋白(SCAMPs)。在针对SCAMPs和VAMP-2的单克隆抗体免疫分离的囊泡上回收了同一批蛋白质。相反,虽然在梯度分离的囊泡中存在语法1A / 1B和突触体相关蛋白(SNAP-25)的免疫反应性,但没有免疫反应与免疫分离的囊泡相关。免疫分离的含H + / K + -ATPase的微管小球上VAMP-2和两种Rab蛋白的观察结果支持了微管小球在调控小泡融合过程中的作用。此外,SCAMPs与Rab11和Rab25的存在暗示着微管小泡是根尖再生小泡的重要种群。

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