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来自微生物源的脯氨酸特异性内肽酶:从一种黄单胞菌属细菌中分离一种酶

Proline-specific endopeptidases from microbial sources: isolation of an enzyme from a Xanthomonas sp.

作者信息

Szwajcer-Dey E, Rasmussen J, Meldal M, Breddam K

机构信息

Carlsberg Research Laboratory, Valby, Denmark.

出版信息

J Bacteriol. 1992 Apr;174(8):2454-9. doi: 10.1128/jb.174.8.2454-2459.1992.

DOI:10.1128/jb.174.8.2454-2459.1992
PMID:1556065
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC205881/
Abstract

An extensive screening among microorganisms for the presence of post-proline-specific endopeptidase activity was performed. This activity was found among ordinary bacteria from soil samples but not among fungi and actinomycetes. This result is in contrast to the previous notion that this activity is confined to the genus Flavobacterium. A proline endopeptidase was isolated from a Xanthomonas sp. and characterized with respect to physicochemical and enzymatic properties. The enzyme is composed of a single peptide chain with a molecular weight of 75,000. The isoelectric point is 6.2. It is inhibited by diisopropylfluorophosphate and may therefore be classified as a serine endopeptidase. The activity profile is bell shaped with an optimum at pH 7.5. By using synthetic peptide substrates and intramolecular fluorescence quenching it was possible to study the influence of substrate structure on the rate of hydrolysis. The enzyme specifically hydrolyzed Pro-X peptide bonds. With Glu at position X, low rates of hydrolysis were observed; otherwise the enzyme exhibited little preference for particular amino acid residues at position X. A similar substrate preference was observed with respect to the amino acid residue preceding the prolyl residue in the substrate. The enzyme required a minimum of two amino acid residues toward the N terminus from the scissile bond, but further elongation of the peptide chain by up to six amino acid residues caused only a threefold increase in the rate of hydrolysis. Attempts to cleave at the prolyl residues in oxidized RNase failed, indicating that the enzyme does not hydrolyze long peptides, a peculiar property it shares with other proline-specific endopeptidases.

摘要

对微生物进行了广泛筛选,以检测脯氨酸特异性内肽酶活性的存在。在土壤样品中的普通细菌中发现了这种活性,但在真菌和放线菌中未发现。这一结果与之前认为这种活性仅限于黄杆菌属的观点相反。从一种黄单胞菌属菌株中分离出一种脯氨酸内肽酶,并对其理化性质和酶学性质进行了表征。该酶由一条分子量为75,000的单肽链组成。其等电点为6.2。它被二异丙基氟磷酸抑制,因此可归类为丝氨酸内肽酶。其活性曲线呈钟形,最适pH值为7.5。通过使用合成肽底物和分子内荧光猝灭,研究了底物结构对水解速率的影响。该酶特异性水解Pro-X肽键。当X位置为Glu时,观察到水解速率较低;否则,该酶对X位置的特定氨基酸残基几乎没有偏好。在底物中脯氨酰残基之前的氨基酸残基方面也观察到了类似的底物偏好。该酶需要在切割键的N端至少有两个氨基酸残基,但肽链进一步延长多达六个氨基酸残基只会使水解速率增加三倍。尝试切割氧化核糖核酸酶中的脯氨酰残基失败,表明该酶不水解长肽,这是它与其他脯氨酸特异性内肽酶共有的独特性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/757d/205881/69e1b06fc7b3/jbacter00074-0048-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/757d/205881/69e1b06fc7b3/jbacter00074-0048-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/757d/205881/69e1b06fc7b3/jbacter00074-0048-a.jpg

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