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The Starch Granule-Associated Protein EARLY STARVATION1 Is Required for the Control of Starch Degradation in Arabidopsis thaliana Leaves

机译:淀粉颗粒相关蛋白EARLY STARVATION1是控制拟南芥叶片淀粉降解的必需物质

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To uncover components of the mechanism that adjusts the rate of leaf starch degradation to the length of the night, we devised a screen for mutant Arabidopsis thaliana plants in which starch reserves are prematurely exhausted. The mutation in one such mutant, named early starvation1 (esv1), eliminates a previously uncharacterized protein. Starch in mutant leaves is degraded rapidly and in a nonlinear fashion, so that reserves are exhausted 2 h prior to dawn. The ESV1 protein and a similar uncharacterized Arabidopsis protein (named Like ESV1 [LESV]) are located in the chloroplast stroma and are also bound into starch granules. The region of highest similarity between the two proteins contains a series of near-repeated motifs rich in tryptophan. Both proteins are conserved throughout starch-synthesizing organisms, from angiosperms and monocots to green algae. Analysis of transgenic plants lacking or overexpressing ESV1 or LESV, and of double mutants lacking ESV1 and another protein necessary for starch degradation, leads us to propose that these proteins function in the organization of the starch granule matrix. We argue that their misexpression affects starch degradation indirectly, by altering matrix organization and, thus, accessibility of starch polymers to starch-degrading enzymes.
机译:为了揭示将叶片淀粉降解速率调节至深夜的机制的组成部分,我们设计了一个筛选器,用于筛选突变型拟南芥植物,其中淀粉储备过早耗尽。这种突变体中的一种称为早期饥饿1(esv1)的突变消除了以前未鉴定的蛋白质。突变叶片中的淀粉以非线性方式迅速降解,因此在黎明前2小时耗尽了储备。 ESV1蛋白和类似的未表征的拟南芥蛋白(命名为Like ESV1 [LESV])位于叶绿体基质中,也与淀粉颗粒结合。两种蛋白质之间的最高相似性区域包含一系列富含色氨酸的近重复基序。从被子植物和单子叶植物到绿藻,这两种蛋白质在整个淀粉合成生物体中都是保守的。分析缺少或过表达ESV1或LESV的转基因植物,以及缺少ESV1和淀粉降解所必需的另一种蛋白质的双重突变体,使我们提出这些蛋白质在淀粉颗粒基质的组织中起作用。我们认为,它们的错误表达会通过改变基质结构间接影响淀粉降解,从而影响淀粉聚合物对淀粉降解酶的可及性。

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