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甲状旁腺素原的转运和加工不需要N端碱性氨基酸。

N-terminal basic amino acids are not required for translocation and processing of preproparathyroid hormone.

作者信息

Szczesna-Skorupa E, Kemper B

机构信息

Department of Physiology and Biophysics, University of Illinois, Urbana-Champaign 61801.

出版信息

Mol Endocrinol. 1989 Jan;3(1):174-8. doi: 10.1210/mend-3-1-174.

Abstract

An N-terminal deletion mutant of preproparathyroid hormone that contains a single basic amino acid, lysine, in the N-terminal domain of the signal peptide is translocated across the endoplasmic reticulum membrane similarly to intact preproparathyroid hormone. To examine the function of charged residues preceeding the hydrophobic core, the lysine was replaced by an uncharged (methionine) or negatively charged (glutamic acid) amino acid. The translocational activity of the mutant signal peptides was assayed in a reticulocyte lysate system containing chicken oviduct microsomal membranes. Altering the net charge of the N-terminal domain did not abolish signal sequence activity, although the efficiency of translocation was decreased for the mutant with a glutamic acid substitution. Posttranslational, ribosome independent, translocation was observed for all the mutants tested, with the same dependence on N-terminal charge but with much lower efficiency than cotranslational translocation. These studies show that the presence of basic amino acids in the N-terminal domain of a eukaryotic signal sequence is not required for its activity.

摘要

甲状旁腺激素原的一种N端缺失突变体,其信号肽的N端结构域中含有单个碱性氨基酸赖氨酸,它与完整的甲状旁腺激素原类似,能够跨内质网膜转运。为了研究疏水核心之前的带电荷残基的功能,将赖氨酸替换为不带电荷的(甲硫氨酸)或带负电荷的(谷氨酸)氨基酸。在含有鸡输卵管微粒体膜的网织红细胞裂解物系统中测定突变信号肽的转运活性。改变N端结构域的净电荷并没有消除信号序列活性,尽管谷氨酸替代的突变体转运效率有所降低。对于所有测试的突变体,均观察到了翻译后、核糖体非依赖性的转运,其对N端电荷的依赖性相同,但效率远低于共翻译转运。这些研究表明,真核信号序列N端结构域中存在碱性氨基酸并非其活性所必需。

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