Visai Livia, Yanagisawa Naoko, Josefsson Elisabet, Tarkowski Andrej, Pezzali Ilaria, Rooijakkers Suzan H M, Foster Timothy J, Speziale Pietro
Center for Tissue Engineering, Via Ferrata 1, 27100 Pavia, Italy.
Department of Biochemistry, Viale Taramelli 3/b, 27100 Pavia, Italy.
Microbiology (Reading). 2009 Mar;155(Pt 3):667-679. doi: 10.1099/mic.0.025684-0.
The ability of Staphylococcus aureus to avoid innate immune responses including neutrophil-mediated phagocytosis is crucial for the organism to cause infection. This multifactorial process involves several secreted and cell-surface-associated proteins. In this paper we report a novel mechanism of combating neutrophils that involves iron-regulated surface determinant protein H (IsdH). The IsdH protein is part of a complex that is only expressed under iron-restricted conditions in order to bind haemoglobin and extract and transport haem into the cytoplasm. A null mutant defective in expression of IsdH, and mutants expressing variants of IsdH with substitutions in residues predicted to be involved in ligand binding, were generated from S. aureus 8325-4. The IsdH-defective mutants were shown by several measures to have reduced virulence compared with the wild-type. The mutant was engulfed more rapidly by human neutrophils in the presence of serum opsonins, survived poorly in fresh whole human blood and was less virulent in a mouse model of sepsis. The protective mechanism seems to stem from an accelerated degradation of the serum opsonin C3b.
金黄色葡萄球菌逃避包括中性粒细胞介导的吞噬作用在内的天然免疫反应的能力,对于该生物体引发感染至关重要。这个多因素过程涉及多种分泌型和细胞表面相关蛋白。在本文中,我们报告了一种对抗中性粒细胞的新机制,该机制涉及铁调节表面决定簇蛋白H(IsdH)。IsdH蛋白是一个复合体的一部分,该复合体仅在铁限制条件下表达,以便结合血红蛋白并将血红素提取并转运到细胞质中。从金黄色葡萄球菌8325-4中产生了IsdH表达缺陷的无效突变体,以及表达在预测参与配体结合的残基处有替代的IsdH变体的突变体。通过多种方法表明,与野生型相比,IsdH缺陷型突变体的毒力降低。在血清调理素存在的情况下,该突变体被人类中性粒细胞吞噬的速度更快,在新鲜的全人类血液中存活能力较差,并且在败血症小鼠模型中的毒力较低。这种保护机制似乎源于血清调理素C3b的加速降解。