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A phosphatidic acid-binding protein of the chloroplast inner envelope membrane involved in lipid trafficking

机译:参与脂质运输的叶绿体内膜的磷脂酸结合蛋白

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The biogenesis of the photosynthetic thylakoid membranes inside plant chloroplasts requires enzymes at the plastid envelope and the endoplasmic reticulum (ER). Extensive lipid trafficking is required for thylakoid lipid biosynthesis. Here the trigalactosyldiacylglycerol2 (tgd2) mutant of Arabidopsis is described. To the extent tested, tgd2 showed a complex lipid phenotype identical to the previously described tgd1 mutant. The aberrant accumulation of oligogalactolipids and triacylglycerols and the reduction of molecular species of galactolipids derived from the ER are consistent with a disruption of the import of ER-derived lipids into the plastid. The TGD1 protein is a permease-like component of an ABC transporter located in the chloroplast inner envelope membrane. The TGD2 gene encodes a phosphatidic acid-binding protein with a predicted mycobacterial cell entry domain. It is tethered to the inner chloroplast envelope membrane facing the outer envelope membrane. Presumed bacterial orthologs of TGD1 and TGD2 in Gram-negative bacteria are typically organized in transcriptional units, suggesting their involvement in a common biological process. Expression of the tgd2-1 mutant cDNA caused a dominant-negative effect replicating the tgd2 mutant phenotype. This result is interpreted as the interference of the mutant protein with its native protein complex. it is proposed that TGD2 represents the substrate-binding or regulatory component of a phosphatidic acid/lipid transport complex in the chloroplast inner envelope membrane.
机译:植物叶绿体内部光合作用类囊体膜的生物发生需要质体包膜和内质网(ER)处的酶。类囊体脂质生物合成需要大量的脂质运输。这里描述了拟南芥的三半乳糖基二酰基甘油甘油2(tgd2)突变体。在测试的范围内,tgd2显示出与先前描述的tgd1突变体相同的复杂脂质表型。寡半乳糖脂和三酰基甘油的异常积累和源自ER的半乳糖脂分子种类的减少与ER衍生脂质进入质体的破坏相一致。 TGD1蛋白是位于叶绿体内膜中的ABC转运蛋白的渗透酶样成分。 TGD2基因编码具有预测分枝杆菌细胞进入结构域的磷脂酸结合蛋白。将其拴在面对外部信封膜的内部叶绿体信封膜上。革兰氏阴性细菌中TGD1和TGD2的细菌直系同源物通常以转录单位组织,表明它们参与了常见的生物学过程。 tgd2-1突变体cDNA的表达引起显性负效应,复制了tgd2突变体表型。该结果被解释为突变蛋白对其天然蛋白复合物的干扰。提出TGD2代表叶绿体内包膜中磷脂酸/脂质转运复合物的底物结合或调节成分。

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