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前原杀菌肽A及相关分泌前体蛋白转运至哺乳动物微粒体的结构要求。

Structural requirements for transport of preprocecropinA and related presecretory proteins into mammalian microsomes.

作者信息

Schlenstedt G, Gudmundsson G H, Boman H G, Zimmermann R

机构信息

Zentrum Biochemie/Abt. Biochemie II, Universität Göttingen, Germany.

出版信息

J Biol Chem. 1992 Dec 5;267(34):24328-32.

PMID:1447183
Abstract

The presecretory protein preprocecropinA (which comprises 64 amino acid residues) as well as a synthetic hybrid between preprocecropinA and dihydrofolate reductase (which comprises 252 amino acid residues) are processed by and transported into mammalian microsomes. Transport of both precursor proteins can take place cotranslationally, i.e. with the aid of ribosome and signal recognition particle, or posttranslationally, i.e. independently of these ribonucleoparticles (RNPs). We investigated the role of the precursor structure with respect to competence for RNP-independent transport by constructing deletion mutants and hybrid proteins. The results demonstrate that the signal peptide is essential for RNP-independent transport. Furthermore, the signal peptide is sufficient for translocation of preprocecropinA derivatives up to 85 amino acid residues in size. However, the conformation of the precursor protein is decisive in the case of larger hybrid proteins.

摘要

分泌前蛋白前抗菌肽A(由64个氨基酸残基组成)以及前抗菌肽A与二氢叶酸还原酶之间的合成杂合蛋白(由252个氨基酸残基组成)可被哺乳动物微粒体加工并转运至其中。这两种前体蛋白的转运既可以在翻译过程中进行,即借助核糖体和信号识别颗粒,也可以在翻译后进行,即独立于这些核糖核蛋白颗粒(RNP)。我们通过构建缺失突变体和杂合蛋白,研究了前体结构在不依赖RNP转运能力方面的作用。结果表明,信号肽对于不依赖RNP的转运至关重要。此外,信号肽足以使大小达85个氨基酸残基的前抗菌肽A衍生物发生易位。然而,对于更大的杂合蛋白而言,前体蛋白的构象起决定性作用。

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