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蛋白质向叶绿体的转运。核编码的叶绿体蛋白质与叶绿体被膜的结合。

Transport of proteins into chloroplasts. Binding of nuclear-coded chloroplast proteins to the chloroplast envelope.

作者信息

Pfisterer J, Lachmann P, Kloppstech K

出版信息

Eur J Biochem. 1982 Aug;126(1):143-8. doi: 10.1111/j.1432-1033.1982.tb06758.x.

Abstract

A system has been constructed in vitro for the binding of cytoplasmically synthesized chloroplast proteins to the chloroplast envelope which precedes the uptake into the organelle in vivo. Isolated chloroplast envelopes from young pea or spinach are capable of binding the majority of proteins obtained by translation of poly(A)-containing RNA from greening plants in vitro. Among the bound proteins the precursors to the light-harvesting chlorophyll a/b apoprotein and the small subunit of ribulose-1,5-bisphosphate carboxylase are prominent. Binding is an intrinsic property of the envelope membrane and does not require energy in the form of ATP. Bound proteins remain on the surface of the envelope vesicles and can be digested by protease. Binding is complete within minutes, shows a high affinity of the reactants, and is non-ionic in nature. Protein binding is specific for translation products of poly(A)-containing RNA from greening plants. Precursors to chloroplast protein are bound preferentially as compared to the mature proteins. The specificity is further demonstrated by the low binding of proteins obtained by run-off translation of polysomes. Binding of radioactive labeled proteins is subject to competition by excess unlabeled homologous proteins. Once bound, the proteins are withdrawn from competition indicating a high binding stability. All the properties found for binding of proteins to isolated envelopes are consistent with the concept of the so-called envelope carrier hypothesis.

摘要

已经构建了一种体外系统,用于细胞质合成的叶绿体蛋白与叶绿体被膜的结合,这种结合在体内蛋白被细胞器摄取之前发生。从幼嫩豌豆或菠菜中分离出的叶绿体被膜能够结合通过体外翻译来自正在绿化的植物的含聚腺苷酸(poly(A))RNA所获得的大部分蛋白质。在结合的蛋白质中,捕光叶绿素a/b脱辅基蛋白和核酮糖-1,5-二磷酸羧化酶小亚基的前体很突出。结合是被膜的固有特性,不需要ATP形式的能量。结合的蛋白质保留在被膜小泡表面,可被蛋白酶消化。结合在几分钟内完成,显示反应物具有高亲和力,且本质上是非离子性的。蛋白质结合对来自正在绿化的植物的含聚腺苷酸RNA的翻译产物具有特异性。与成熟蛋白相比,叶绿体蛋白的前体优先被结合。通过多核糖体连续翻译获得的蛋白质结合率低进一步证明了这种特异性。放射性标记蛋白质的结合会受到过量未标记同源蛋白质的竞争。一旦结合,蛋白质就不再参与竞争,表明结合稳定性高。蛋白质与分离出的被膜结合所发现的所有特性都与所谓的被膜载体假说的概念一致。

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