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Two components of the chloroplast protein import apparatus, IAP86 and IAP75, interact with the transit sequence during the recognition and translocation of precursor proteins at the outer envelope

机译:叶绿体蛋白导入装置的两个组件IAP86和IAP75在识别和转运前体蛋白在外壳上的过程中与转运序列相互作用

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摘要

The interactions of precursor proteins with components of the chloroplast envelope were investigated during the early stages of protein import using a chemical cross-linking strategy. In the absence of energy, two components of the outer envelope import machinery, IAP86 and IAP75, cross-linked to the transit sequence of the precursor to the small subunit of ribulose-1, 5-bisphosphate carboxylase (pS) in a precursor binding assay. In the presence of concentrations of ATP or GTP that support maximal precursor binding to the envelope, cross- linking to the transit sequence occurred predominantly with IAP75 and a previously unidentified 21-kD polypeptide of the inner membrane, indicating that the transit sequence had inserted across the outer membrane. Cross-linking of envelope components to sequences in the mature portion of a second precursor, preferredoxin, was detected in the presence of ATP or GTP, suggesting that sequences distant from the transit sequence were brought into the vicinity of the outer membrane under these conditions. IAP75 and a third import component, IAP34, were coimmunoprecipitated with IAP86 antibodies from solubilized envelope membranes, indicating that these three proteins form a stable complex in the outer membrane. On the basis of these observations, we propose that IAP86 and IAP75 act as components of a multisubunit complex to mediate energy-independent recognition of the transit sequence and subsequent nucleoside triphosphate-induced insertion of the transit sequence across the outer membrane.
机译:使用化学交联策略,在蛋白质导入的早期阶段研究了前体蛋白质与叶绿体包膜成分的相互作用。在没有能量的情况下,在前体结合试验中,外壳导入机器的两个组件IAP86和IAP75交联到前体到核糖1小亚基的转运序列5-双磷酸羧化酶(pS)。 。在存在最大程度支持前体与包膜结合的ATP或GTP浓度的情况下,与转运序列的交联主要发生在IAP75和内膜以前未知的21 kD多肽上,这表明转运序列已插入外膜。在存在ATP或GTP的情况下,检测到包膜成分与第二种前体(优选恶性毒素)的成熟部分中的序列发生交联,这表明在这些条件下,远离转运序列的序列被带入了外膜附近。 IAP75和第三个输入成分IAP34与IAP86抗体从可溶性包膜中共免疫沉淀,表明这三种蛋白在外膜中形成稳定的复合物。基于这些观察,我们建议IAP86和IAP75充当多亚基复合物的组分,以介导转运序列的能量独立识别以及随后的核苷三磷酸核苷诱导转运序列插入外膜。

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