首页> 外文期刊>Plant physiology >Metabolic relations of inositol 3,4,5,6-tetrakisphosphate revealed by cell permeabilization. Identification of inositol 3,4,5,6-tetrakisphosphate 1-kinase and inositol 3,4,5,6-tetrakisphosphate phosphatase activities in mesophyll cells
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Metabolic relations of inositol 3,4,5,6-tetrakisphosphate revealed by cell permeabilization. Identification of inositol 3,4,5,6-tetrakisphosphate 1-kinase and inositol 3,4,5,6-tetrakisphosphate phosphatase activities in mesophyll cells

机译:细胞通透性揭示了肌醇3,4,5,6-四磷酸的代谢关系。鉴定叶肉细胞中肌醇3,4,5,6-四磷酸1激酶和肌醇3,4,5,6-四磷酸磷酸酶的活性

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Using a permeabilization strategy to introduce Ins(3,4,5,6) P-4 into mesophyll protoplasts of Commelina communis, we have identified Ins(3,4,5,6) P-4 l-kinase activity in mesophyll cells. Multiple InsP(3) isomers were identified in Spirodela polyrhiza and Arabidopsis. Only two of these, Ins(1,2,3) P-3 and Ins(3,4,6) P-3, have previously been identified in plants and only in monocots. The isomers detected in S. polyrhiza included D- and/or L-Ins(3,4,5) P-3, D- and/or L-Ins(3,5,6) P-3, and D- and/or L-Ins(2,4,5) P-3. Ins(1,4,5) P-3, if present, was only a tiny fraction of total InsP(3) species. We have also identified inositol polyphosphate phosphatase activities, Ins(3,4,5,6) P-4 6-phosphatase and Ins(3,4,5, 6) P-4 4-phosphatase, whose action on endogenous inositol polyphosphates explains the presence of D- and/or L-Ins(3,4,5) P-3 and D- and/or L-Ins(3,5,6) P-4 in mesophyll cells. Inositol trisphosphates identified in Arabidopsis include Ins(1,2,3) P-3 and D- and/or L-Ins(3,4,6) P-3, suggesting that dicots may share pathways of InsP(6) biosynthesis and breakdown in common with monocots. [References: 27]
机译:使用通透化策略,将Ins(3,4,5,6)P-4引入到Commelina communis的叶肉原生质体中,我们已经确定了叶肉细胞中的Ins(3,4,5,6)P-4 l激酶活性。在螺旋藻和拟南芥中鉴定出多个InsP(3)异构体。其中只有Ins(1,2,3)P-3和Ins(3,4,6)P-3中的两个以前在植物中和仅在单子叶植物中被鉴定出。在多枝链霉菌中检测到的异构体包括D-和/或L-Ins(3,4,5)P-3,D-和/或L-Ins(3,5,6)P-3和D-和/或L-Ins(2,4,5)P-3。 Ins(1,4,5)P-3(如果存在)仅占总InsP(3)种类的一小部分。我们还确定了肌醇多磷酸磷酸酶活性,Ins(3,4,5,6)P-4 6-磷酸酶和Ins(3,4,5,6)P-4 4-磷酸酶,它们对内源性肌醇多磷酸的作用解释了叶肉细胞中D-和/或L-Ins(3,4,5)P-3和D-和/或L-Ins(3,5,6)P-4的存在。在拟南芥中鉴定出的肌醇三磷酸酯包括Ins(1,2,3)P-3和D-和/或L-Ins(3,4,6)P-3,这表明双子叶植物可能共享InsP(6)生物合成和单子叶植物常见的细目分类。 [参考:27]

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