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A SNARE Complex Unique to Seed Plants Is Required for Protein Storage Vacuole Biogenesis and Seed Development of Arabidopsis thaliana

机译:种子植物特有的网罗复合体是拟南芥蛋白质的液泡生物发生和种子发育所需的种子植物。

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The SNARE complex is a key regulator of vesicular traffic, executing membrane fusion between transport vesicles or organelles and target membranes. A functional SNARE complex consists of four coiled-coil helical bundles, three of which are supplied by Q-SNAREs and another from an R-SNARE. Arabidopsis thaliana VAMP727 is an R-SNARE, with homologs only in seed plants. We have found that VAMP727 colocalizes with SYP22/VAM3, a Q- SNARE, on a subpopulation of prevacuolar compartments/endosomes closely associated with the vacuolar membrane. Genetic and biochemical analyses, including examination of a synergistic interaction of vamp727 and syp22 mutations, histological examination of protein localization, and coimmunoprecipitation from Arabidopsis lysates indicate that VAMP727 forms a complex with SYP22, VTI11, and SYP51 and that this complex plays a crucial role in vacuolar transport, seed maturation, and vacuole biogenesis. We suggest that the VAMP727 complex mediates the membrane fusion between the prevacuolar compartment and the vacuole and that this process has evolved as an essential step for seed development.
机译:SNARE复合物是水泡运输的关键调节剂,在运输水泡或细胞器与目标膜之间进行膜融合。一个功能强大的SNARE复合体由四个螺旋线圈螺旋束组成,其中三个由Q-SNARE提供,另一个由R-SNARE提供。拟南芥VAMP727是一种R-SNARE,仅在种子植物中具有同源物。我们已经发现,VAMP727与SYP22 / VAM3,Q-SNARE共定位在与液泡膜紧密相关的前真空隔室/内体的亚群上。遗传和生物化学分析,包括检查vamp727和syp22突变的协同相互作用,蛋白质定位的组织学检查以及拟南芥裂解物的免疫共沉淀表明,VAMP727与SYP22,VTI11和SYP51形成复合物,并且该复合物在液泡运输,种子成熟和液泡生物发生。我们建议VAMP727复合物介导前真空室和液泡之间的膜融合,并且此过程已演变为种子发育的重要步骤。

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