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Inositol Polyphosphate 5-Phosphatases 1 and 2 Are Required for Regulating Seedling Growth

机译:调节幼苗生长需要肌醇多磷酸5-磷酸酶1和2

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摘要

Signals can be perceived and amplified at the cell membrane by receptors coupled to the production of a variety of second messengers, including myoinositol 1,4,5-trisphosphate [Ins(1,4,5)P3]. The myoinositol polyphosphate 5-phosphatases (5PTases; EC 3.1.3.56) comprise a large protein family that hydrolyzes 5-phosphates from a variety of myoinositol phosphate (InsP) and phosphoinositide phosphate (PtdInsP) substrates. Arabidopsis thaliana has 15 genes encoding 5PTases. Biochemical analyses of a subgroup of 5PTase enzymes suggest that these enzymes have both overlapping and unique substrate preferences. Ectopic expression of these genes in transgenic plants can reduce Ins(1,4,5)P3 levels and alter abscisic acid (ABA) signaling. To further explore the function of 5PTases in signaling, we have identified and characterized T-DNA insertional mutants for 5PTase1 and 5PTase2 and produced a double mutant. When grown in the dark, the seeds from these mutants germinate faster than wild-type seeds and the mutant seedlings have longer hypocotyls than wild-type seedlings. Seeds from these mutant lines also demonstrate an increase in sensitivity to ABA. These changes in early seedling growth are accompanied by mass increases in Ins(1,4,5)P3, but not by changes in endogenous ABA content. By labeling the endogenous myoinositol pool in 5ptase1 and 5ptase2 mutants, we detected increases in Ins(1,4,5)P3 and a decrease in PtdIns, PtdIns(4)P, and phosphatidylinositol (4,5) bisphosphate. Taken together, these data indicate that the At5PTase1 and At5PTase2 genes have nonredundant roles in hydrolyzing inositol second-messenger substrates and that regulation of Ins(1,4,5)P3 levels is important during germination and early seedling development.
机译:信号可以通过与各种第二信使产生有关的受体在细胞膜上被感知和放大,这些第二信使包括肌醇1,4,5-三磷酸[Ins(1,4,5)P3]。肌醇多磷酸5-磷酸酶(5PTase; EC 3.1.3.56)包含一个大的蛋白质家族,可水解多种肌醇磷酸酯(InsP)和磷酸肌醇磷酸酯(PtdInsP)底物的5-磷酸酯。拟南芥具有15个编码5PTase的基因。对5PTase酶亚组的生化分析表明,这些酶具有重叠和独特的底物偏好。这些基因在转基因植物中的异位表达可以降低Ins(1,4,5)P3水平并改变脱落酸(ABA)信号传导。为了进一步探索5PTase在信号传导中的功能,我们已经鉴定并鉴定了5PTase1和5PTase2的T-DNA插入突变体,并产生了一个双突变体。在黑暗中生长时,来自这些突变体的种子发芽的速度比野生型种子快,并且突变体的胚轴比野生型种子的胚轴长。这些突变株系的种子也显示出对ABA的敏感性增加。这些幼苗早期生长的变化伴随Ins(1,4,5)P3的质量增加,而不是内源ABA含量的变化。通过标记5ptase1和5ptase2突变体中的内源性肌醇库,我们检测到Ins(1,4,5)P3的增加和PtdIns,PtdIns(4)P和磷脂酰肌醇(4,5)的双磷酸酯的减少。综上所述,这些数据表明At5PTase1和At5PTase2基因在水解肌醇第二信使底物方面具有非冗余作用,并且Ins(1,4,5)P3水平的调节在发芽和幼苗早期发育中很重要。

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