首页> 外文OA文献 >Expression, processing and secretion of a proteolytically-sensitive insect diuretic hormone by Saccharomyces cerevisiae requires the use of a yeast strain lacking genes encoding the Yap3 and Mkc7 endoproteases found in the secretory pathway.
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Expression, processing and secretion of a proteolytically-sensitive insect diuretic hormone by Saccharomyces cerevisiae requires the use of a yeast strain lacking genes encoding the Yap3 and Mkc7 endoproteases found in the secretory pathway.

机译:酿酒酵母表达,加工和分泌蛋白水解敏感性昆虫利尿激素需要使用酵母菌株,该菌株缺乏编码在分泌途径中发现的Yap3和Mkc7内切蛋白酶的基因。

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摘要

A system is described for the heterologous expression of peptides in Saccharomyces cerevisiae. A synthetic gene encoding a precursor of the 41 amino acid Manduca sexta diuretic hormone (Mas-DH) was expressed at 0.8 mg/l purified peptide. A precursor of a mutant peptide of Mas-DH, Mas-DH[K22Q] was also expressed. The peptides were purified, then treated with peptidylglycine alpha-amidating enzyme to generate the alpha-amidated, mature, form of Mas-DH or Mas-DH[K22Q], which were biologically active. Successful expression of full-length Mas-DH+Gly depended upon the use of a protease-deficient yeast strain. In wild-type strains, Mas-DH+Gly was recovered only as proteolytic fragments, even in the presence of various protease inhibitors. Expression of Mas-DH+Gly in strains deficient in either the Mkc7 or the Yap3 protease reduced proteolysis, while no proteolysis of Mas-DH+Gly was detectable in a strain lacking both proteases. This protease-deficient strain may prove of general utility for expression of peptides. Analysis of recovered proteolytic fragments revealed a complex pattern of cleavage sites. Both the Yap3 and Mkc7 proteases preferred to cleave at a single Glu-Lys downward arrow-Glu-Arg site. Analysis of secondary cleavage sites showed that Yap3 preferred to cleave after either Lys or Arg and Mkc7 after Lys. This paper is the first report on the in vivo activity and specificity of Yap3 and Mkc7 expressed at physiological levels.
机译:描述了一种用于在酿酒酵母中异源表达肽的系统。以0.8mg / l纯化的肽表达编码41个氨基酸的曼杜卡六性利尿激素(Mas-DH)前体的合成基因。还表达了Mas-DH突变肽Mas-DH [K22Q]的前体。纯化肽,然后用肽基甘氨酸α-酰胺化酶处理以产生具有生物活性的α-酰胺化,成熟形式的Mas-DH或Mas-DH [K22Q]。全长Mas-DH + Gly的成功表达取决于蛋白酶缺陷型酵母菌株的使用。在野生型菌株中,即使存在各种蛋白酶抑制剂,Mas-DH + Gly也只能以蛋白水解片段的形式回收。在缺乏Mkc7或Yap3蛋白酶的菌株中Mas-DH + Gly的表达降低了蛋白水解,而在缺乏两种蛋白酶的菌株中均未检测到Mas-DH + Gly的蛋白水解。这种蛋白酶缺陷型菌株可以证明具有用于肽表达的通用性。对回收的蛋白水解片段的分析显示了裂解位点的复杂模式。 Yap3和Mkc7蛋白酶都优选在单个Glu-Lys向下箭头-Glu-Arg位点切割。次级切割位点的分析表明,Yap3倾向于在Lys或Arg后裂解,而Lys之后的Arg和Mkc7。本文是有关生理水平表达的Yap3和Mkc7的体内活性和特异性的首次报道。

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