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The Arabidopsis Endosomal Sorting Complex Required for Transport III Regulates Internal Vesicle Formation of the Prevacuolar Compartment and Is Required for Plant Development

机译:运输III所需的拟南芥内体分选复合物可调节前真空室的内部囊泡形成,并且是植物发育所需的

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We have established an efficient transient expression system with several vacuolar reporters to study the roles of endosomal sorting complex required for transport (ESCRT)-III subunits in regulating the formation of intraluminal vesicles of prevacuolar compartments (PVCs)/multivesicular bodies (MVBs) in plant cells. By measuring the distributions of reporters on/within the membrane of PVC/ MVB or tonoplast, we have identified dominant negative mutants of ESCRT-III subunits that affect membrane protein degradation from both secretory and endocytic pathways. In addition, induced expression of these mutants resulted in reduction in luminal vesicles of PVC/MVB, along with increased detection of membrane-attaching vesicles inside the PVC/MVB. Transgenic Arabidopsis (Arabidopsis thaliana) plants with induced expression of ESCRT-III dominant negative mutants also displayed severe cotyledon developmental defects with reduced cell size, loss of the central vacuole, and abnormal chloroplast development in mesophyll cells, pointing out an essential role of the ESCRT-III complex in postembryonic development in plants. Finally, membrane dissociation of ESCRT-III components is important for their biological functions and is regulated by direct interaction among Vacuolar Protein Sorting-Associated Protein20-1 (VPS20.1), Sucrose Nonfermenting7-1, VPS2.1, and the adenosine triphosphatase VPS4/SUPPRESSOR OF K~+ TRANSPORT GROWTH DEFECT1.
机译:我们已经建立了一个有效的瞬时表达系统,带有多个液泡报道分子,以研究转运所需的内体分选复合物(ESCRT)-III亚基在调节植物前庭室(PVC)/多泡体(MVB)的腔内囊泡形成中的作用细胞。通过测量在PVC / MVB或液泡膜的膜上/之内的报道分子的分布,我们确定了ESCRT-III亚基的显性负突变体,该突变体影响膜蛋白从分泌和内吞途径的降解。另外,这些突变体的诱导表达导致PVC / MVB的内腔囊泡减少,以及PVC / MVB内的膜附着囊泡的检测增加。具有诱导的ESCRT-III显性负突变体表达的转基因拟南芥(Arabidopsis thaliana)植物也显示出严重的子叶发育缺陷,其细胞大小减小,中央液泡丧失以及叶肉细胞中叶绿体发育异常,这表明ESCRT的重要作用-III复合物在植物的胚后发育中。最后,ESCRT-III成分的膜解离对于它们的生物学功能很重要,并且受Vacuolar蛋白质分选相关蛋白20-1(VPS20.1),蔗糖Nonfermenting7-1,VPS2.1和腺苷三磷酸酶VPS4之间直接相互作用的调节。 / K〜+传输增长缺陷的抑制器1。

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