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肽激素前体在酿酒酵母中的异源表达。一种对单碱性氨基酸具有特异性的新型激素原内肽酶的证据。

Heterologous expression of peptide hormone precursors in the yeast Saccharomyces cerevisiae. Evidence for a novel prohormone endoprotease with specificity for monobasic amino acids.

作者信息

Bourbonnais Y, Danoff A, Thomas D Y, Shields D

机构信息

Genetics Section, National Research Council of Canada, Montréal, Québec.

出版信息

J Biol Chem. 1991 Jul 15;266(20):13203-9.

PMID:1677005
Abstract

The peptide somatostatin (SRIF) exists as two different molecular species. In addition to the most common form, which is a 14-residue peptide, there is also a 14-amino acid amino-terminally extended form of the tetradecapeptide, SRIF-28. Both peptides are synthesized as larger precursors containing paired basic and monobasic amino acids at their processing sites, which, upon cleavage, generate either SRIF-14 or -28, respectively. In mammals a single prepro-SRIF molecule undergoes tissue-specific processing to generate the mature hormone whereas in some species of fish separate genes encode two distinct but homologous precursors prepro-SRIF-I and -II that give rise to SRIF-14 and -28, respectively. To investigate the molecular basis for differential processing of the prohormones we introduce their cDNAs into yeast cells (Saccharomyces cerevisiae). The signal peptides of both precursors were poorly recognized by the yeast endoplasmic reticulum translocation apparatus, consequently only low levels of SRIF peptides were synthesized. To circumvent this problem a chimeric precursor consisting of the alpha-factor signal peptide plus 30 residues of the proregion was fused to pro-SRIF-II. This fusion protein was efficiently transported through the yeast secretory pathway and processed to SRIF-28 exclusively, which is identical to the processing of the native precursor in pancreatic islet D-cells. Most significantly, cleavage of the precursor to SRIF-28 was independent of the Kex 2 endoprotease since processing occurred efficiently in a kex 2 mutant strain. We conclude that in addition to the Kex 2 protease, yeast possess a distinct prohormone converting enzyme with specificity toward monobasic processing sites.

摘要

肽类生长抑素(SRIF)以两种不同的分子形式存在。除了最常见的由14个氨基酸残基组成的形式外,还有一种氨基端延伸的由14个氨基酸组成的十四肽形式,即SRIF - 28。这两种肽都是作为更大的前体合成的,在前体的加工位点含有成对的碱性和单碱性氨基酸,切割后分别产生SRIF - 14或SRIF - 28。在哺乳动物中,单个前生长抑素原分子经过组织特异性加工产生成熟激素,而在某些鱼类中,不同的基因编码两种不同但同源的前体——前生长抑素原 - I和 - II,分别产生SRIF - 14和SRIF - 28。为了研究激素原差异加工的分子基础,我们将它们的cDNA导入酵母细胞(酿酒酵母)。两种前体的信号肽都很难被酵母内质网转运装置识别,因此仅合成了低水平的SRIF肽。为了解决这个问题,将由α - 因子信号肽加上前肽区的30个残基组成的嵌合前体与前生长抑素原 - II融合。这种融合蛋白通过酵母分泌途径被有效转运,并仅加工成SRIF - 28,这与胰岛D细胞中天然前体的加工过程相同。最显著的是,前体切割成SRIF - 28不依赖于Kex 2内切蛋白酶,因为在kex 2突变株中加工过程也能有效发生。我们得出结论,除了Kex 2蛋白酶外,酵母还拥有一种对单碱性加工位点具有特异性的独特激素原转化酶。

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