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Phosphoinositide-dependent regulation of VAN3 ARF-GAP localization and activity essential for vascular tissue continuity in plants

机译:磷酸肌醇依赖性调节VaN3 aRF-Gap定位和对植物血管组织连续性必不可少的活性

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摘要

ACAP-type ARF GTPase activating proteins (ARF-GAPs) regulate multiple cellular processes, including endocytosis, secretion, phagocytosis, cell adhesion and cell migration. However, the regulation of ACAP functions by other cellular proteins is poorly understood. We have reported previously that a plant ACAP, VAN3, plays a pivotal role in plant venation continuity. Here, we report on newly identified VAN3 regulators: the CVP2 (cotyledon vascular pattern 2) 5 PTase, which is considered to degrade IP3 and also to produce PtdIns(4) P from PtdIns(4,5) P-2; and a PH domain-containing protein, VAB (VAN3 binding protein). Combinational mutations of both CVP2 and its closest homologue CVL1 (CVP2 like 1) phenocopied the strong allele of van3 mutants, showing severe vascular continuity. The phenotype of double mutants between van3, cvp2 and vab suggested that VAN3, CVP2 and VAB function in vascular pattern formation in the same pathway. Localization analysis revealed that both CVP2 and VAB colocalize with VAN3 in the trans-Golgi network (TGN), supporting their functions in the same pathway. The subcellular localization of VAN3 was dependent on its PH domain, and mislocalization of VAN3 was induced in cvp2 or vab mutants. These results suggest that CVP2 and VAB cooperatively regulate the subcellular localization of VAN3 through the interaction between its PH domain and phosphoinositides and/or inositol phosphates. In addition, PtdIns(4) P, to which VAN3 binds preferentially, enhanced the ARF-GAP activity of VAN3, whereas IP3 inhibited it. These results suggest the existence of PtdIns(4) P and/or IP3-dependent subcellular targeting and regulation of VAN3 ACAP activity that governs plant vascular tissue continuity.
机译:ACAP型ARF GTP酶激活蛋白(ARF-GAP)调节多种细胞过程,包括内吞,分泌,吞噬,细胞粘附和细胞迁移。但是,人们对其他细胞蛋白对ACAP功能的调节知之甚少。以前我们已经报道过,植物ACAP VAN3在植物通气连续性中起着关键作用。在这里,我们报道了新发现的VAN3调节剂:CVP2(子叶血管模式2)5 PTase,它被认为可降解IP3并从PtdIns(4,5)P-2产生PtdIns(4)P;以及含有PH结构域的蛋白质VAB(VAN3结合蛋白)。 CVP2及其最接近的同源CVL1(CVP2像1)的组合突变表型化了van3突变体的强等位基因,显示出严重的血管连续性。 van3,cvp2和vab之间的双重突变体的表型表明VAN3,CVP2和VAB在同一途径的血管模式形成中起作用。本地化分析表明,CVP2和VAB都在反高尔基网络(TGN)中与VAN3共定位,从而支持它们在同一路径中的功能。 VAN3的亚细胞定位取决于其PH结构域,并且在cvp2或vab突变体中诱导VAN3的错误定位。这些结果表明,CVP2和VAB通过其PH结构域与磷酸肌醇和/或肌醇磷酸酯之间的相互作用来共同调节VAN3的亚细胞定位。此外,VAN3优先结合的PtdIns(4)P增强了VAN3的ARF-GAP活性,而IP3抑制了它。这些结果表明存在PtdIns(4)P和/或IP3依赖的亚细胞靶向和VAN3 ACAP活性的调控,调控植物维管组织的连续性。

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