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首页> 外文期刊>Insects >Cloning, Expression, Sequence Analysis and Homology Modeling of the Prolyl Endoprotease from Eurygaster integriceps Puton
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Cloning, Expression, Sequence Analysis and Homology Modeling of the Prolyl Endoprotease from Eurygaster integriceps Puton

机译:Eurygaster integriceps Puton脯氨酰内切蛋白酶的克隆,表达,序列分析和同源性建模

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摘要

Eurygaster integriceps Puton, commonly known as sunn pest, is a major pest of wheat in Northern Africa, the Middle East and Eastern Europe. This insect injects a prolyl endoprotease into the wheat, destroying the gluten. The purpose of this study was to clone the full length cDNA of the sunn pest prolyl endoprotease (spPEP) for expression in E. coli and to compare the amino acid sequence of the enzyme to other known PEPs in both phylogeny and potential tertiary structure. Sequence analysis shows that the 5ꞌ UTR contains several putative transcription factor binding sites for transcription factors known to be expressed in Drosophila that might be useful targets for inhibition of the enzyme. The spPEP was first identified as a prolyl endoprotease by Darkoh et al., 2010. The enzyme is a unique serine protease of the S9A family by way of its substrate recognition of the gluten proteins, which are greater than 30 kD in size. At 51% maximum identity to known PEPs, homology modeling using SWISS-MODEL, the porcine brain PEP (PDB: 2XWD) was selected in the database of known PEP structures, resulting in a predicted tertiary structure 99% identical to the porcine brain PEP structure. A Km for the recombinant spPEP was determined to be 210 ± 53 µM for the zGly-Pro-pNA substrate in 0.025 M ethanolamine, pH 8.5, containing 0.1 M NaCl at 37 °C with a turnover rate of 172 ± 47 µM Gly-Pro-pNA/s/µM of enzyme.
机译:Eurygaster integriceps Puton,俗称晒黑害虫,是北非,中东和东欧的小麦主要害虫。这种昆虫向小麦中注入脯氨酰内切蛋白酶,破坏了面筋。这项研究的目的是克隆被害虫脯氨酰内切蛋白酶(spPEP)的全长cDNA,以便在大肠杆菌中表达,并比较该酶的氨基酸序列与其他已知PEP的系统发育和潜在三级结构。序列分析表明5′UTR含有几个假定的转录因子结合位点,这些结合位点与果蝇中已知的转录因子结合,可能是抑制该酶的有用靶标。 spPEP首先被Darkoh等人(2010年)鉴定为脯氨酰内切蛋白酶。该酶凭借其对面筋蛋白的底物识别(其大小大于30 kD)是S9A家族的独特丝氨酸蛋白酶。与已知PEP的最大同一性为51%,使用SWISS-MODEL进行同源性建模,在已知PEP结构的数据库中选择了猪脑PEP(PDB:2XWD),从而导致预测的三级结构与猪脑PEP结构的99%相同。重组spPEP的Km在0.025 M乙醇胺,pH 8.5,含有0.1 M NaCl的条件下,在37°C时的zGly-Pro-pNA底物在210°C为210±53 µM,周转率为172±47 µM Gly-Pro -pNA / s / µM酶。

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