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首页> 外文期刊>Protein Expression and Purification >Purification and characterization of a Z-Pro-prolinal-insensitive Z-Gly-Pro-7-amino-4-methyl coumarin-hydrolyzing peptidase from bovine serum - A new proline-specific peptidase
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Purification and characterization of a Z-Pro-prolinal-insensitive Z-Gly-Pro-7-amino-4-methyl coumarin-hydrolyzing peptidase from bovine serum - A new proline-specific peptidase

机译:牛血清中Z-Pro-脯氨酸不敏感的Z-Gly-Pro-7-氨基-4-甲基香豆素水解肽酶的纯化和表征-一种新的脯氨酸特异性肽酶

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The study of a new proline-specific peptidase from bovine serum is presented.. The enzyme readily cleaves the prolyl oligopeptidase (PO) substrate Z-Gly-Pro-MCA, liberating the fluorophore MCA, thus allowing quantification of enzyme activity. Unlike PO, however this peptidase is completely insensitive to the PO-specific inhibitor Z-Pro-prolinal and has been designated Z-Pro-prolinal-insensitive Z-Gly-Pro-MCA-hydrolyzing peptidase (ZIP). The two peptidases were successfully separated from each other by phenyl Sepharose hydrophobic interaction chromatography and the subsequent purification focused on the isolation of ZIP from bovine serum. In addition to phenyl Sepharose, calcium phosphate cellulose and DEAE anion-exchange chromatography were employed in the purification, with an overall enzyme yield of 33% and a purification factor of 4023. SDS-PAGE and size-exclusion chromatography indicated a dimeric structure with a relative molecular mass of 174 kDa. The enzyme was stable over the pH range 2.5-10.0. Optimal activity was detected in the pH range 7.4-8.0. Isoelectric focusing revealed a pI of 5.68. Inhibition by AEBSF suggests the peptidase may be a serine protease and ZIP possibly contains a cysteine residue near the active site. alpha M-2 failed to inhibit activity, suggesting oligopeptidase specificity. HPLC analysis revealed a broad substrate specificity for proline-containing peptides. Kinetic analysis indicated that ZIP had a high affinity for Z-Gly-Pro-MCA with a K-m of 54 muM deduced. Bovine serum ZIP exhibits biophysical characteristics both similar to and different from those of PO isolated from a number of sources and may serve an important physiological function in the degradation of bioactive oligopeptides. (C) 2001 Academic Press. [References: 41]
机译:提出了一种从牛血清中提取新的脯氨酸特异性肽酶的研究。该酶易于裂解脯氨酰寡肽酶(PO)底物Z-Gly-Pro-MCA,释放出荧光团MCA,从而可以定量酶活性。但是,与PO不同,该肽酶对PO特异性抑制剂Z-Pro-prolinal完全不敏感,因此被称为Z-Pro-prolinal不敏感的Z-Gly-Pro-MCA水解肽酶(ZIP)。通过苯基琼脂糖凝胶疏水相互作用色谱法成功地将两种肽酶彼此分离,随后的纯化着重于从牛血清中分离ZIP。除苯基琼脂糖凝胶外,还使用磷酸钙纤维素和DEAE阴离子交换色谱法纯化,总酶收率为33%,纯化系数为4023。SDS-PAGE和尺寸排阻色谱法显示具有相对分子质量为174 kDa。该酶在2.5-10.0的pH范围内是稳定的。在7.4-8.0的pH范围内检测到最佳活性。等电聚焦显示pI为5.68。 AEBSF的抑制作用表明肽酶可能是丝氨酸蛋白酶,而ZIP可能在活性位点附近含有半胱氨酸残基。 αM-2无法抑制活性,提示寡肽酶特异性。 HPLC分析显示,对于含脯氨酸的肽具有广泛的底物特异性。动力学分析表明,ZIP对Z-Gly-Pro-MCA具有很高的亲和力,推定的K-m为54μM。牛血清ZIP表现出与从多种来源分离的PO相似和不同的生物物理特征,并且可能在生物活性寡肽的降解中起重要的生理功能。 (C)2001学术出版社。 [参考:41]

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