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首页> 外文期刊>Molecular Plant >OsVPS9A Functions Cooperatively with OsRAB5A to Regulate Post-Golgi Dense Vesicle-Mediated Storage Protein Trafficking to the Protein Storage Vacuole in Rice Endosperm Cells
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OsVPS9A Functions Cooperatively with OsRAB5A to Regulate Post-Golgi Dense Vesicle-Mediated Storage Protein Trafficking to the Protein Storage Vacuole in Rice Endosperm Cells

机译:OsVPS9A与OsRAB5A协同起作用,以调节高尔基后密集囊泡介导的存储蛋白向水稻胚乳细胞中蛋白存储液泡的运输。

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Post-Golgi, dense vesicle (DV)-mediated proglutelin transport to PBII (PSV) is disrupted in rice gpa2 mutant, which is mutated in OsVPS9A gene. OsVPS9A and OSRAB5A are shown to regulate this pathway cooperatively. In addition, DVs are suggested to fuse directly with PBII (PSV) to deliver cargo.In the rice endosperm cells, glutelins are synthesized on rough endoplasmic reticulum as proglutelins and are sorted to the protein storage vacuoles (PSVs) called protein body IIs (PBIIs), where they are converted to the mature forms. Dense vesicle (DV)-mediated trafficking of proglutelins in rice seeds has been proposed, but the post-Golgi control of this process is largely unknown. Whether DV can fuse directly with PSV is another matter of debate. In this study, we propose a regulatory mechanism underlying DV-mediated, post-Golgi proglutelin trafficking to PBII (PSV). gpa2, a loss-of-function mutant of OsVPS9A, which encodes a GEF of OsRAB5A, accumulated uncleaved proglutelins. Proglutelins were mis-targeted to the paramural bodies and to the apoplast along the cell wall in the form of DVs, which led to a concomitant reduction in PBII size. Previously reported gpa1, mutated in OsRab5a, has a similar phenotype, while gpa1gpa2 double mutant exacerbated the conditions. In addition, OsVPS9A interacted with OsRAB5A in vitro and in vivo. We concluded that OsVPS9A and OsRAB5A may work together and play a regulatory role in DV-mediated post-Golgi proglutelin trafficking to PBII (PSV). The evidence that DVs might fuse directly to PBII (PSV) to deliver cargos is also presented.
机译:高尔基后,致密囊泡(DV)介导的谷蛋白向PBII(PSV)的运输在水稻gpa2突变体中被破坏,该突变体在OsVPS9A基因中发生了突变。显示OsVPS9A和OSRAB5A协同调节该途径。此外,建议将DV直接与PBII(PSV)融合以运送货物。 ),将其转换为成熟形式。已经提出了密集囊泡(DV)介导的水稻种子中谷蛋白的运输,但是高尔基体后对该过程的控制在很大程度上是未知的。 DV是否可以与PSV直接融合是另一个争论的问题。在这项研究中,我们提出了一种由DV介导的高尔基后谷蛋白原向PBII(PSV)贩运的调节机制。 gpa2是OsVPS9A的功能丧失突变体,其编码OsRAB5A的GEF,积累了未切割的谷蛋白。谷蛋白前体以DV的形式被错误地靶向壁旁体和沿细胞壁的质外体,从而导致PBII大小随之减少。先前报道的在OsRab5a中突变的gpa1具有相似的表型,而gpa1gpa2双重突变体加剧了这种情况。另外,OsVPS9A在体外和体内与OsRAB5A相互作用。我们得出的结论是,OsVPS9A和OsRAB5A可能协同工作,并在DV介导的高尔基体后谷蛋白原向PBII(PSV)的运输中发挥调节作用。还提供了DV可能直接与PBII(PSV)融合以运送货物的证据。

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