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Arabidopsis thaliana encodes a bacterial-type heterodimeric isopropylmalate isomerase involved in both Leu biosynthesis and the Met chain elongation pathway of glucosinolate formation

机译:拟南芥编码Leu生物合成和芥子油苷形成的Met链延长途径的细菌型异二聚异苹果酸苹果酸异构酶。

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摘要

The last steps of the Leu biosynthetic pathway and the Met chain elongation cycle for glucosinolate formation share identical reaction types suggesting a close evolutionary relationship of these pathways. Both pathways involve the condensation of acetyl-CoA and a 2-oxo acid, isomerization of the resulting 2-malate derivative to form a 3-malate derivative, the oxidation-decarboxylation of the 3-malate derivative to give an elongated 2-oxo acid, and transamination to generate the corresponding amino acid. We have now analyzed the genes encoding the isomerization reaction, the second step of this sequence, in Arabidopsis thaliana. One gene encodes the large subunit and three encode small subunits of this enzyme, referred to as isopropylmalate isomerase (IPMI) with respect to the Leu pathway. Metabolic profiling of large subunit mutants revealed accumulation of intermediates of both Leu biosynthesis and Met chain elongation, and an altered composition of aliphatic glucosinolates demonstrating the function of this gene in both pathways. In contrast, the small subunits appear to be specialized to either Leu biosynthesis or Met chain elongation. Green fluorescent protein tagging experiments confirms the import of one of the IPMI small subunits into the chloroplast, the localization of the Met chain elongation pathway in these organelles. These results suggest the presence of different heterodimeric IPMIs in Arabidopsis chloroplasts with distinct substrate specificities for Leu or glucosinolate metabolism determined by the nature of the different small subunit.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-009-9519-5) contains supplementary material, which is available to authorized users.
机译:Leu生物合成途径的最后一步和芥子油苷形成的Met链延长周期共有相同的反应类型,表明这些途径的进化关系密切。两种途径均涉及乙酰辅酶A和2-氧代酸的缩合,所得2-苹果酸衍生物的异构化以形成3-苹果酸衍生物,3-苹果酸衍生物的氧化-脱羧以得到细长的2-氧代酸。 ,然后转氨生成相应的氨基酸。现在我们已经分析了拟南芥中编码该序列第二步异构化反应的基因。关于Leu途径,一个基因编码该酶的大亚基,三个基因编码小亚基,被称为异丙基苹果酸异构酶(IPMI)。大型亚基突变体的代谢谱分析显示亮光生物合成和Met链延长的中间体的积累,以及脂肪族芥子油苷组成的改变,证明了该基因在两种途径中的功能。相反,小的亚基似乎专门用于Leu生物合成或Met链延长。绿色荧光蛋白标签实验证实了IPMI小亚基之一导入叶绿体中,Met链延长途径在这些细胞器中的定位。这些结果表明,拟南芥叶绿体中存在不同的异二聚体IPMI,其对Leu或芥子油苷代谢的底物特异性由不同的小亚基的性质决定。电子补充材料本文的在线版本(doi:10.1007 / s11103-009-9519- 5)包含补充材料,授权用户可以使用。

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