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Directing exocrine secretory vesicles to the apical membrane by actin cables generated by the formin mDia1

机译:通过formin mDia1产生的肌动蛋白电缆将外分泌分泌小泡引导至顶膜

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摘要

The final stage in exocrine secretion involves translocation of vesicles from their storage areas to the apical membrane. We show that actin-coated secretory vesicles of the exocrine pancreas travel this distance over bundles of specialized actin cables emanating from the apical plasma membrane. These bundles are stable structures that require constant G-actin incorporation and are distinct from the actin web that surrounds the exocrine lumen. The murine mammalian Diaphanous-related formin 1 (mDia1) was identified as a generator of these cables. The active form of mDia1 localized to the apical membrane, and introduction of an active form of mDia1 led to a marked increase in bundle density along the lumen perimeter. Compromising formation of the cables does not prevent secretion, but results in disorganized trafficking and fusion between secretory vesicles. Similar apical secretory tracks were also found in the submandibular salivary glands. Together with previous results that identified a role for Diaphanous in apical secretion in tubular organs of Drosophila, the role of Diaphanous formins at the final stages of secretion appears to be highly conserved.
机译:外分泌分泌的最后阶段涉及囊泡从其储存区到顶膜的移位。我们显示,外分泌胰腺的肌动蛋白包被的分泌性囊泡在从根尖质膜发出的专用肌动蛋白电缆束上传播这一距离。这些束是需要恒定G-肌动蛋白掺入的稳定结构,并且与围绕外分泌管腔的肌动蛋白网不同。鼠类哺乳动物透照相关的甲蛋白1(mDia1)被确定为这些电缆的产生者。 mDia1的活性形式位于顶膜,而mDia1活性形式的引入导致沿管腔周长的束密度显着增加。损害电缆的形成并不能阻止分泌,但是会导致分泌小泡之间的混乱运输和融合。在颌下唾液腺中也发现了类似的根尖分泌道。连同先前的鉴定出透明性在果蝇的管状器官的顶端分泌中的作用的结果一起,透明性福明蛋白在分泌的最后阶段的作用似乎是高度保守的。

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