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A mammalian cytochrome fused to a chloroplast transit peptide is a functional haemoprotein and is imported into isolated chloroplasts

机译:与叶绿体转运肽融合的哺乳动物细胞色素是一种功能性血红蛋白,可导入分离的叶绿体中

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pThe small subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) is a major chloroplast stromal protein that is cytosolically synthesized as a precursor with an N-terminal extension, known as the transit sequence or transit peptide (Tp). The Tp is essential for the post-translational uptake of the precursor by the chloroplast. The Tp is thought to influence the conformation of the precursor protein and to facilitate polypeptide translocation across the chloroplast envelope barrier via a Tp-selective translocon. To address these issues we have devised a novel strategy to generate substrate amounts of a chloroplast targeting sequence as a fusion with the chromogenic globular domain of cytochrome ib/isub5/sub (Cyt). The chimaeric protein is an ideal probe for investigating the conformation of a preprotein and events surrounding protein import into isolated chloroplasts. The Cyt of liver endoplasmic reticulum was fused at its N-terminus with the Tp of the small subunit of Rubisco of iPisum sativum/i (pea). To enhance its production by clearance from the cytoplasm of iEscherichia coli/i, the chimaera was engineered by further N-terminal linkage of a prokaryotic secretory signal. Expression of this tripartite fusion resulted in mg quantities of the signal sequence–processed Tp–Cyt protein, which was eventually targeted to the membranes. The chromogenic nature of the chimaera and its localization to the bacterial membrane facilitated the biochemical isolation of the precursor in a soluble and functional form. The purified preprotein displayed spectral and enzymic properties that were indistinguishable from the native parental Cyt, implying an absence of observable influence of the Tp on the conformation of the haemoprotein. The chimaeric precursor was imported into the stroma of the isolated chloroplasts in a dose-dependent manner. Import was also strongly dependent upon exogenously supplied ATP. The stromally imported chimaeric precursor protein was processed to a size characteristic of Cyt./p
机译:> 1,5-双磷酸核糖羧化酶/加氧酶的小亚基(Rubisco)是主要的叶绿体基质蛋白,通过胞质合成为具有N端延伸的前体,称为转运序列或转运肽(Tp )。 Tp对于叶绿体对前体的翻译后摄取至关重要。 Tp被认为影响前体蛋白的构象,并促进多肽通过Tp选择性转位子跨叶绿体包膜屏障转运。为了解决这些问题,我们设计了一种新颖的策略来生成底物数量的叶绿体靶向序列,以与细胞色素 b 5 (Cyt)的生色球状结构域融合。嵌合蛋白是研究前蛋白的构象以及将蛋白导入分离的叶绿体中的事件的理想探针。肝内质网的Cyt在其N端与豌豆(Riisco)的Rubisco小亚基的Tp融合。为了通过从大肠杆菌的细胞质中清除而提高其产量,通过进一步的原核分泌信号的N末端连接来改造嵌合体。这种三重融合蛋白的表达产生了毫克量的信号序列处理过的Tp-Cyt蛋白,该蛋白最终靶向膜。嵌合体的发色性质及其在细菌膜上的定位促进了可溶性和功能性形式前体的生化分离。纯化的前蛋白显示出与天然亲本Cyt不能区分的光谱和酶学性质,这表明Tp对血红素构象的影响不存在。将嵌合前体以剂量依赖的方式导入分离的叶绿体的基质中。进口也强烈依赖于外源提供的ATP。将基质导入的嵌合前体蛋白加工成Cyt的大小特征。

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