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深入了解嗜热链球菌的蛋白水解系统:利用依沙西丁来表征细胞相关胞外肽酶活性。

New Insights into the Proteolytic System of Streptococcus thermophilus: Use of Isracidin To Characterize Cell-Associated Extracellular Peptidase Activities.

机构信息

Équipe "Protéolyse & Biofonctionnalités des Protéines et des Peptides" (PB2P), Unité de Recherche "Animal et Fonctionnalités des Produits Animaux" (UR AFPA), Université de Lorraine , Vandoeuvre-lès-Nancy, F-54506, France.

INRA, Unité de Recherche "Animal et Fonctionnalités des Produits Animaux" (UR AFPA), Unité Sous Contrat 340 , Vandoeuvre-lès-Nancy, F-54506, France.

出版信息

J Agric Food Chem. 2015 Sep 2;63(34):7522-31. doi: 10.1021/acs.jafc.5b01647. Epub 2015 Aug 24.

Abstract

The influence on the hydrolysis of isracidin of cell-associated extracellular aminopeptidase and X-prolyl dipeptidyl peptidase activities in addition to protease PrtS of Streptococcus thermophilus strains was investigated. S. thermophilus LMD-9 (PrtS(+) phenotype) efficiently hydrolyzed the isracidin mainly through the PrtS activity, whereas strain CNRZ1066 (PrtS(-) phenotype) and two mutant strains LMD-9-ΔprtS and LMD-9-ΔprtS-ΔhtrA also displayed substrate hydrolysis, but different from that of the wild type strain LMD-9. Identification by mass spectrometry of breakdown products of isracidin revealed the existence of novel cell-associated extracellular carboxypeptidase and peptidyl dipeptidase activities in all PrtS(-) strains, besides known cell-associated extracellular aminopeptidase and X-prolyl dipeptidyl peptidase activities. Both aminopeptidase and peptidyl dipeptidase activities were not able to cleave the isracidin at peptide bonds with proline residues. No hydrolysis of isracidin was detected in cell free filtrate for all the strains studied, indicating that no cell lysis had occurred. Taken together, these results suggested the presence of cell-associated extracellular peptidase activities in S. thermophilus strains that could be vital for the growth of PrtS(-) strains.

摘要

研究了细胞相关细胞外氨肽酶和 X-脯氨酰二肽酰肽酶活性以及嗜热链球菌菌株蛋白酶 PrtS 对异肌肽水解的影响。嗜热链球菌 LMD-9(PrtS(+)表型)通过 PrtS 活性有效地水解异肌肽,而菌株 CNRZ1066(PrtS(-)表型)和两个突变株 LMD-9-ΔprtS 和 LMD-9-ΔprtS-ΔhtrA 也表现出底物水解,但与野生型菌株 LMD-9 不同。通过质谱鉴定异肌肽的降解产物表明,除了已知的细胞相关细胞外氨肽酶和 X-脯氨酰二肽酰肽酶活性外,所有 PrtS(-) 菌株中还存在新型细胞相关细胞外羧肽酶和肽二肽酶活性。两种氨肽酶和肽二肽酶活性均不能在含有脯氨酸残基的肽键上切割异肌肽。对于所有研究的菌株,细胞游离滤液中均未检测到异肌肽的水解,表明没有细胞裂解。综上所述,这些结果表明嗜热链球菌菌株中存在细胞相关细胞外肽酶活性,这对于 PrtS(-) 菌株的生长可能至关重要。

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