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首页> 外文期刊>The Journal of biological chemistry >myo-Inositol-1-phosphate Synthase Is Required for Polar Auxin Transport and Organ Development
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myo-Inositol-1-phosphate Synthase Is Required for Polar Auxin Transport and Organ Development

机译:肌醇肌醇-1-磷酸合酶是极性养蛋白运输和器官开发所必需的

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myo-Inositol-1-phosphate synthase is a conserved enzyme that catalyzes the first committed and rate-limiting step in inositol biosynthesis. Despite its wide occurrence in all eukaryotes, the role of myo-inositol-1-phosphate synthase and de novo inositol biosynthesis in cell signaling and organism development has been unclear. In this study, we isolated loss-of-function mutants in the Arabidopsis MIPS1 gene from different ecotypes. It was found that all null mips1 mutants are defective in embryogenesis, cotyledon venation patterning, root growth, and root cap development. The mutant roots are also agravitropic and have reduced basipetal auxin transport. mips1 mutants have significantly reduced levels of major phosphatidylinositols and exhibit much slower rates of endocytosis. Treatment with brefeldin A induces slower PIN2 protein aggregation in mips1, indicating altered PIN2 trafficking. Our results demonstrate that MIPS1 is critical for maintaining phosphatidylinositol levels and affects pattern formation in plants likely through regulation of auxin distribution.
机译:肌肌醇-1-磷酸合酶是一种保守的酶,其催化肌醇生物合成中的第一种致密的和速率限制步骤。尽管在所有真核生物中发生了广泛的发生,但肌肌醇-1-磷酸合酶和De Novo Ontovo肌醇生物合成在细胞信号传导和生物发育中的作用仍不明确。在这项研究中,从不同的生态型中分离拟南芥MIPS1基因中的功能突变体。结果发现,所有空MIPS1突变体在胚胎发生中有缺陷,子叶腔图案化,根生长和根帽开发。突变根也也是富硫酸盐,并且具有降低的胸胸腔转运。 MIPS1突变体具有显着降低的主要磷脂酰肌醇水平,并且表现出较慢的内吞作用速度较慢。用Brefeldin治疗A在MIPS1中诱导较慢的Pin2蛋白质聚集,表明PIN2种贩改变。我们的结果表明,MIPS1对于维持磷脂酰肌醇水平至关重要,并影响可能通过调节养肝分布的植物中的图案形成。

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