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首页> 外文期刊>The Plant Cell >GLUTELIN PRECURSOR ACCUMULATION3 encodes a regulator of post-Golgi vesicular traffic essential for vacuolar protein sorting in rice endosperm.
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GLUTELIN PRECURSOR ACCUMULATION3 encodes a regulator of post-Golgi vesicular traffic essential for vacuolar protein sorting in rice endosperm.

机译:谷蛋白前体积累3编码高尔基后水泡运输的调节剂,对稻胚乳中的液泡蛋白分选至关重要。

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In seed plants, a major pathway for sorting of storage proteins to the protein storage vacuole (PSV) depends on the Golgi-derived dense vesicles (DVs). However, the molecular mechanisms regulating the directional trafficking of DVs to PSVs remain largely elusive. Here, we report the functional characterization of the rice (Oryza sativa) glutelin precursor accumulation3 (gpa3) mutant, which exhibits a floury endosperm phenotype and accumulates excess proglutelins in dry seeds. Cytological and immunocytochemistry studies revealed that in the gpa3 mutant, numerous proglutelin-containing DVs are misrouted to the plasma membrane and, via membrane fusion, release their contents into the apoplast to form a new structure named the paramural body. Positional cloning of GPA3 revealed that it encodes a plant-specific kelch-repeat protein that is localized to the trans-Golgi networks, DVs, and PSVs in the developing endosperm. In vitro and in vivo experiments verified that GPA3 directly interacts with the rice Rab5a-guanine exchange factor VPS9a and forms a regulatory complex with Rab5a via VPS9a. Furthermore, our genetic data support the notion that GPA3 acts synergistically with Rab5a and VPS9a to regulate DV-mediated post-Golgi traffic in rice. Our findings provide insights into the molecular mechanisms regulating the plant-specific PSV pathway and expand our knowledge of vesicular trafficking in eukaryotes.
机译:在种子植物中,将存储蛋白分类到蛋白存储液泡(PSV)的主要途径取决于高尔基体来源的致密囊泡(DVs)。但是,调节DV向PSV定向运输的分子机制仍然难以捉摸。在这里,我们报告水稻(Oryza sativa)谷蛋白前体积累3(gpa3)突变体的功能表征,该突变体表现出面粉胚乳表型并在干燥种子中积累过量的谷蛋白。细胞学和免疫细胞化学研究表明,在gpa3突变体中,许多含谷蛋白原的DV被错误地转移至质膜,并通过膜融合将其内含物释放到质外体中,形成了一种新的结构,称为壁旁体。 GPA3的位置克隆表明,它编码一种植物特有的海螺重复蛋白,该蛋白位于发育中的胚乳中的反式高尔基网络,DV和PSV中。体外和体内实验证明,GPA3与水稻Rab5a-鸟嘌呤交换因子VPS9a直接相互作用,并通过VPS9a与Rab5a形成调控复合物。此外,我们的遗传数据支持GPA3与Rab5a和VPS9a协同作用来调节DV介导的高尔基后水稻运输的观点。我们的发现为调节植物特异性PSV途径的分子机制提供了见识,并扩大了我们对真核生物囊泡运输的认识。

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