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化脓性链球菌中一种由氧气诱导但不依赖蛋白质F的纤连蛋白结合途径。

An oxygen-induced but protein F-independent fibronectin-binding pathway in Streptococcus pyogenes.

作者信息

Lee J Y, Caparon M

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110-1093, USA.

出版信息

Infect Immun. 1996 Feb;64(2):413-21. doi: 10.1128/iai.64.2.413-421.1996.

Abstract

Protein F is an important fibronectin-binding adhesin of Streptococcus pyogenes (group A streptococcus). However, all previous analyses of protein F have been conducted in a mutant strain which expresses protein F under anaerobic conditions nonpermissive for expression in other strains. In this study, we have examined the fibronectin-binding properties of several protein F-deficient mutants cultured under aerobic conditions and have identified a second pathway for binding fibronectin. Unlike the case with protein F, exposure to an aerobic environment does not induce transcription of a new gene product. Rather, O2 is apparently required for the modification of a protease-resistant cell surface component into a binding-component form. Modification occurred preferentially at a pH of 6.0 or less, and the binding of the modified component to fibronectin required Zn2+. The oxidizing agent Fe(CN)6 could be substituted for O2 and stimulated expression of binding activity under O2-limiting conditions. Streptococcal fibronectin binding mediated by this pathway but not by protein F could be inhibited by laminin and by streptococcal lipoteichoic acid, a molecule previously implicated as the streptococcal adhesin for fibronectin. The non-protein F-binding activity could also substantially enhance the binding of the organism for fibronectin. The non-protein F-binding activity could also substantially enhance the binding of the organism to basement membrane. By using differential inhibition, analyses of binding to non-protein F mutant strains demonstrated that the total level of fibronectin bound under aerobic conditions reflects contributions from both pathways. Because of its dependence on Zn2+, an oxidant, and pH, this binding activity has been designated the ZOP binding pathway.

摘要

蛋白F是化脓性链球菌(A组链球菌)一种重要的纤连蛋白结合黏附素。然而,以往对蛋白F的所有分析都是在一个突变菌株中进行的,该菌株在厌氧条件下表达蛋白F,而这种条件在其他菌株中是不允许表达的。在本研究中,我们检测了在有氧条件下培养的几种蛋白F缺陷突变体的纤连蛋白结合特性,并确定了第二条纤连蛋白结合途径。与蛋白F的情况不同,暴露于有氧环境不会诱导新基因产物的转录。相反,氧气显然是将一种抗蛋白酶的细胞表面成分修饰成结合成分形式所必需的。修饰优先发生在pH值为6.0或更低的条件下,修饰后的成分与纤连蛋白的结合需要锌离子。氧化剂铁氰化物可以替代氧气,并在氧气受限条件下刺激结合活性的表达。由该途径介导而非蛋白F介导的链球菌纤连蛋白结合可被层粘连蛋白和链球菌脂磷壁酸抑制,链球菌脂磷壁酸是一种先前被认为是纤连蛋白的链球菌黏附素的分子。非蛋白F结合活性也可显著增强该生物体与纤连蛋白的结合。非蛋白F结合活性还可显著增强该生物体与基底膜的结合。通过使用差异抑制,对与非蛋白F突变菌株结合的分析表明,有氧条件下结合的纤连蛋白的总水平反映了两条途径的贡献。由于其对锌离子、氧化剂和pH值的依赖性,这种结合活性被命名为ZOP结合途径。

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