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链球菌5'-核苷酸酶A(S5nA),一种促进免疫逃逸的新型化脓性链球菌毒力因子。

Streptococcal 5'-Nucleotidase A (S5nA), a Novel Streptococcus pyogenes Virulence Factor That Facilitates Immune Evasion.

作者信息

Zheng Lisa, Khemlani Adrina, Lorenz Natalie, Loh Jacelyn M S, Langley Ries J, Proft Thomas

机构信息

From the Department of Molecular Medicine and Pathology, School of Medical Sciences, and.

From the Department of Molecular Medicine and Pathology, School of Medical Sciences, and the Maurice Wilkins Center, University of Auckland, Auckland, New Zealand.

出版信息

J Biol Chem. 2015 Dec 25;290(52):31126-37. doi: 10.1074/jbc.M115.677443. Epub 2015 Nov 2.

Abstract

Streptococcus pyogenes is an important human pathogen that causes a wide range of diseases. Using bioinformatics analysis of the complete S. pyogenes strain SF370 genome, we have identified a novel S. pyogenes virulence factor, which we termed streptococcal 5'-nucleotidase A (S5nA). A recombinant form of S5nA hydrolyzed AMP and ADP, but not ATP, to generate the immunomodulatory molecule adenosine. Michaelis-Menten kinetics revealed a Km of 169 μm and a Vmax of 7550 nmol/mg/min for the substrate AMP. Furthermore, recombinant S5nA acted synergistically with S. pyogenes nuclease A to generate macrophage-toxic deoxyadenosine from DNA. The enzyme showed optimal activity between pH 5 and pH 6.5 and between 37 and 47 °C. Like other 5'-nucleotidases, S5nA requires divalent cations and was active in the presence of Mg(2+), Ca(2+), or Mn(2+). However, Zn(2+) inhibited the enzymatic activity. Structural modeling combined with mutational analysis revealed a highly conserved catalytic dyad as well as conserved substrate and cation-binding sites. Recombinant S5nA significantly increased the survival of the non-pathogenic bacterium Lactococcus lactis during a human whole blood killing assay in a dose-dependent manner, suggesting a role as an S. pyogenes virulence factor. In conclusion, we have identified a novel S. pyogenes enzyme with 5'-nucleotidase activity and immune evasion properties.

摘要

化脓性链球菌是一种重要的人类病原体,可引发多种疾病。通过对化脓性链球菌菌株SF370全基因组进行生物信息学分析,我们鉴定出一种新型化脓性链球菌毒力因子,我们将其命名为链球菌5'-核苷酸酶A(S5nA)。重组形式的S5nA可水解AMP和ADP,但不能水解ATP,从而生成免疫调节分子腺苷。米氏动力学分析显示,底物AMP的Km为169μm,Vmax为7550nmol/mg/min。此外,重组S5nA与化脓性链球菌核酸酶A协同作用,从DNA中生成对巨噬细胞有毒性的脱氧腺苷。该酶在pH 5至pH 6.5以及37至47°C之间表现出最佳活性。与其他5'-核苷酸酶一样,S5nA需要二价阳离子,并且在Mg(2+)、Ca(2+)或Mn(2+)存在时具有活性。然而,Zn(2+)会抑制其酶活性。结构建模与突变分析相结合,揭示了一个高度保守的催化二元组以及保守的底物和阳离子结合位点。在人全血杀伤试验中,重组S5nA以剂量依赖性方式显著提高了非致病性细菌乳酸乳球菌的存活率,表明其作为化脓性链球菌毒力因子的作用。总之,我们鉴定出一种具有5'-核苷酸酶活性和免疫逃逸特性的新型化脓性链球菌酶。

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