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通过原叶绿素酸酯响应转运肽对叶绿体蛋白质输入的调控。

Regulation of chloroplast protein import through a protochlorophyllide-responsive transit peptide.

作者信息

Reinbothe C, Lebedev N, Apel K, Reinbothe S

机构信息

Institute for Plant Sciences, Department of Plant Genetics, Swiss Federal Institute of Technology Zurich, Universitätsstrasse 2, CH-8092 Zurich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1997 Aug 5;94(16):8890-4. doi: 10.1073/pnas.94.16.8890.

Abstract

NADPH

protochlorophyllide (Pchlide) oxidoreductase (POR) is the key enzyme of chlorophyll biosynthesis in angiosperms. In barley, two POR enzymes, termed PORA and PORB, exist. Both are nucleus-encoded plastid proteins that must be imported posttranslationally from the cytosol. Whereas the import of the precursor of PORA, pPORA, previously has been shown to depend on Pchlide, the import of pPORB occurred constitutively. To study this striking difference, chimeric precursor proteins were constructed in which the transit sequences of the pPORA and pPORB were exchanged and fused to either their cognate polypeptides or to a cytosolic dihydrofolate reductase (DHFR) reporter protein of mouse. As shown here, the transit peptide of the pPORA (transA) conferred the Pchlide requirement of import onto both the mature PORB and the DHFR. By contrast, the transit peptide of the pPORB directed the reporter protein into both chloroplasts that contained or lacked translocation-active Pchlide. In vitro binding studies further demonstrated that the transit peptide of the pPORA, but not of the pPORB, is able to bind Pchlide. We conclude that the import of the authentic pPORA and that of the transA-PORB and transA-DHFR fusion proteins is regulated by a direct transit peptide-Pchlide interaction, which is likely to occur in the plastid envelope, a major site of porphyrin biosynthesis.

摘要

NADPH

原叶绿素酸酯(Pchlide)氧化还原酶(POR)是被子植物叶绿素生物合成的关键酶。在大麦中,存在两种POR酶,分别称为PORA和PORB。它们都是细胞核编码的质体蛋白,必须在翻译后从细胞质中导入。此前已表明,PORA的前体pPORA的导入依赖于Pchlide,而pPORB的导入则是组成型的。为了研究这种显著差异,构建了嵌合前体蛋白,其中pPORA和pPORB的转运序列被交换,并与它们各自的同源多肽或小鼠的胞质二氢叶酸还原酶(DHFR)报告蛋白融合。如下所示,pPORA的转运肽(transA)将导入对Pchlide的需求赋予了成熟的PORB和DHFR。相比之下,pPORB的转运肽将报告蛋白导入了含有或缺乏转运活性Pchlide的叶绿体中。体外结合研究进一步表明,pPORA的转运肽而非pPORB的转运肽能够结合Pchlide。我们得出结论,天然pPORA以及transA - PORB和transA - DHFR融合蛋白的导入是由转运肽与Pchlide的直接相互作用调节的,这种相互作用可能发生在质体包膜中,质体包膜是卟啉生物合成的主要场所。

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