首页> 美国卫生研究院文献>Frontiers in Plant Science >Molecular dissection of Phaseolus vulgaris polygalacturonase-inhibiting protein 2 reveals the presence of hold/release domains affecting protein trafficking toward the cell wall
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Molecular dissection of Phaseolus vulgaris polygalacturonase-inhibiting protein 2 reveals the presence of hold/release domains affecting protein trafficking toward the cell wall

机译:菜豆多聚半乳糖醛酸酶抑制蛋白2的分子解剖揭示了影响蛋白质向细胞壁运输的保持/释放域的存在

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摘要

The plant endomembrane system is massively involved in the synthesis, transport and secretion of cell wall polysaccharides and proteins; however, the molecular mechanisms underlying trafficking toward the apoplast are largely unknown. Besides constitutive, the existence of a regulated secretory pathway has been proposed. A polygalacturonase inhibitor protein (PGIP2), known to move as soluble cargo and reach the cell wall through a mechanism distinguishable from default, was dissected in its main functional domains (A, B, C, D), and C sub-fragments (C1–10), to identify signals essential for its regulated targeting. The secretion patterns of the fluorescent chimeras obtained by fusing different PGIP2 domains to the green fluorescent protein (GFP) were analyzed. PGIP2 N-terminal and leucine-rich repeat domains (B and C, respectively) seem to operate as holding/releasing signals, respectively, during PGIP2 transit through the Golgi. The B domain slows down PGIP2 secretion by transiently interacting with Golgi membranes. Its depletion leads, in fact, to the secretion via default (Sp2-susceptible) of the ACD-GFP chimera faster than PGIP2. Depending on its length (at least the first 5 leucine-rich repeats are required), the C domain modulates B interaction with Golgi membranes allowing the release of chimeras and their extracellular secretion through a Sp2 independent pathway. The addition of the vacuolar sorting determinant Chi to PGIP2 diverts the path of the protein from cell wall to vacuole, suggesting that C domain is a releasing rather than a cell wall sorting signal.
机译:植物膜系统广泛参与细胞壁多糖和蛋白质的合成,运输和分泌。然而,向质外体运输的分子机制在很大程度上是未知的。除了组成型,还提出了调节分泌途径的存在。在其主要功能结构域(A,B,C,D)和C亚片段(C1)中解剖了一种聚半乳糖醛酸酶抑制剂蛋白(PGIP2),该蛋白以可溶货物的形式移动,并通过与默认情况不同的机制到达细胞壁。 –10),以识别对其监管目标至关重要的信号。分析了通过将不同的PGIP2域融合到绿色荧光蛋白(GFP)中获得的荧光嵌合体的分泌模式。 PGIP2穿过高尔基体时,N末端和富含亮氨酸的重复域(分别为B和C)似乎分别作为保持/释放信号。 B结构域通过与高尔基体膜短暂相互作用而减慢PGIP2的分泌。实际上,它的耗竭导致ACD-GFP嵌合体通过默认(Sp2易感)的分泌比PGIP2更快。根据其长度(至少需要前5个富含亮氨酸的重复序列),C结构域调节B与高尔基体膜的相互作用,从而允许嵌合体的释放及其通过Sp2独立途径的细胞外分泌。在PGIP2上添加液泡分选决定簇Chi,将蛋白质的路径从细胞壁转移到液泡,表明C结构域是释放而不是细胞壁分选信号。

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