首页> 美国卫生研究院文献>Plant Physiology >Evidence That a Malate/Inorganic Phosphate Exchange Translocator Imports Carbon across the Leucoplast Envelope for Fatty Acid Synthesis in Developing Castor Seed Endosperm.
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Evidence That a Malate/Inorganic Phosphate Exchange Translocator Imports Carbon across the Leucoplast Envelope for Fatty Acid Synthesis in Developing Castor Seed Endosperm.

机译:苹果酸/无机磷酸盐交换转运体通过白质塑料包膜中的碳导入以发展蓖麻籽胚乳中的脂肪酸合成的证据。

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摘要

In this study we examined the processes by which malate and pyruvate are taken up across the leucoplast envelope for fatty acid synthesis in developing castor (Ricinus communis L.) seed endosperm. Malate was taken up by isolated leucoplasts with a concentration dependence indicative of protein-mediated transport. The maximum rate of malate uptake was 704 [plus or minus] 41 nmol mg-1 protein h-1 and the Km was 0.62 [plus or minus] 0.08 mM. In contrast, the rate of pyruvate uptake increased linearly with respect to the substrate concentration and was 5-fold less than malate at a concentration of 5 mM. Malate uptake was inhibited by inorganic phosphate (Pi), glutamate, malonate, succinate, 2-oxoglutarate, and n-butyl malonate, an inhibitor of the mitochondrial malate/Pi-exchange translocator. Back-exchange experiments confirmed that malate was taken up by leucoplasts in counterexchange for Pi. The exchange stoichiometry was 1:1. The rate of malate-dependent fatty acid synthesis by isolated leucoplasts was 3-fold greater than from pyruvate at a concentration of 5 mM and was inhibited by n-butyl malonate. It is proposed that leucoplasts from developing castor endosperm contain a malate/Pi translocator that imports malate for fatty acid synthesis. This type of dicarboxylate transport activity has not been identified previously in plastids.
机译:在这项研究中,我们研究了在发育中的蓖麻(Ricinus communis L.)种子胚乳中,苹果酸和丙酮酸跨过白质囊膜吸收脂肪酸合成的过程。苹果酸被分离的白质细胞吸收,其浓度依赖性指示蛋白质介导的转运。苹果酸的最大吸收速率为704 [正负] 41nmol mg-1蛋白h-1,Km为0.62 [正负] 0.08mM。相反,丙酮酸的摄取速率相对于底物浓度线性增加,并且在5mM的浓度下比苹果酸少5倍。苹果酸的吸收受到无机磷酸盐(Pi),谷氨酸,丙二酸,琥珀酸,2-氧戊二酸和丙二酸正丁酯(线粒体苹果酸/ Pi交换转运蛋白的抑制剂)的抑制。反向交换实验证实苹果酸在叶绿体中被Pi抵消。交换化学计量为1:1。分离的白质细胞合成苹果酸依赖性脂肪酸的速率比丙酮酸在浓度为5 mM时高3倍,并且被丙二酸正丁酯抑制。提出了来自发育中的蓖麻胚乳的白质体包含苹果酸/ Pi易位子,其输入苹果酸用于脂肪酸合成。这种类型的二羧酸盐转运活性先前尚未在质体中鉴定。

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