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FRAGILE FIBER3, an Arabidopsis Gene Encoding a Type II Inositol Polyphosphate 5-Phosphatase, Is Required for Secondary Wall Synthesis and Actin Organization in Fiber Cells

机译:FRAGILE FIBER3,编码II型肌醇多磷酸5-磷酸酶的拟南芥基因,是纤维细胞中次生壁合成和肌动蛋白组织所必需的

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摘要

Type II inositol polyphosphate 5-phosphatases (5PTases) in yeast and animals have been known to regulate the level of phosphoinositides and thereby influence various cellular activities, such as vesicle trafficking and actin organization. In plants, little is known about the phosphatases involved in hydrolysis of phosphoinositides, and roles of type II 5PTases in plant cellular functions have not yet been characterized. In this study, we demonstrate that the FRAGILE FIBER3 (FRA3) gene of Arabidopsis thaliana, which encodes a type II 5PTase, plays an essential role in the secondary wall synthesis in fiber cells and xylem vessels. The fra3 mutations caused a dramatic reduction in secondary wall thickness and a concomitant decrease in stem strength. These phenotypes were associated with an alteration in actin organization in fiber cells. Consistent with the defective fiber and vessel phenotypes, the FRA3 gene was found to be highly expressed in fiber cells and vascular tissues in stems. The FRA3 protein is composed of two domains, an N-terminal localized WD-repeat domain and a C-terminal localized 5PTase catalytic domain. In vitro activity assay demonstrated that recombinant FRA3 exhibited phosphatase activity toward PtdIns(4,5)P2, PtdIns(3,4,5)P3, and Ins(1,4,5)P3, with the highest substrate affinity toward PtdIns(4,5)P2. The fra3 missense mutation, which caused an amino acid substitution in the conserved motif II of the 5PTase catalytic domain, completely abolished the FRA3 phosphatase activity. Moreover, the endogenous levels of PtdIns(4,5)2 and Ins(1,4,5)P3 were found to be elevated in fra3 stems. Together, our findings suggest that the FRA3 type II 5PTase is involved in phosphoinositide metabolism and influences secondary wall synthesis and actin organization.
机译:已知酵母和动物中的II型肌醇多磷酸5-磷酸酶(5PTase)可调节磷酸肌醇的水平,从而影响各种细胞活动,例如囊泡运输和肌动蛋白组织。在植物中,关于参与磷酸肌醇水解的磷酸酶知之甚少,并且II型5PT酶在植物细胞功能中的作用尚未被表征。在这项研究中,我们证明拟南芥的FRAGILE FIBER3(FRA3)基因编码II型5PTase,在纤维细胞和木质部血管的次生壁合成中起重要作用。 fra3突变导致次生壁厚显着减少,茎强度随之降低。这些表型与纤维细胞中肌动蛋白组织的改变有关。与有缺陷的纤维和血管表型一致,发现FRA3基因在茎的纤维细胞和血管组织中高表达。 FRA3蛋白由两个域组成,一个N端定位的WD重复域和一个C端定位的5PTase催化域。体外活性测定表明,重组FRA3对PtdIns(4,5)P2,PtdIns(3,4,5)P3和Ins(1,4,5)P3表现出磷酸酶活性,对PtdIns(4 ,5)P2。 fra3错义突变在5PTase催化结构域的保守基序II中引起氨基酸取代,从而完全消除了FRA3磷酸酶的活性。此外,发现fra3茎中PtdIns(4,5)2和Ins(1,4,5)P3的内源性水平升高。总之,我们的发现表明FRA3 II型5PTase参与磷酸肌醇的代谢,并影响继发壁的合成和肌动蛋白的组织。

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