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金黄色葡萄球菌的透明质酸裂解酶——一种毒力因子?

The hyaluronate lyase of Staphylococcus aureus - a virulence factor?

作者信息

Makris George, Wright John D, Ingham Eileen, Holland Keith T

机构信息

School of Biochemistry and Microbiology, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Microbiology (Reading). 2004 Jun;150(Pt 6):2005-2013. doi: 10.1099/mic.0.26942-0.

Abstract

The hyaluronate lyase (HL) gene of Staphylococcus aureus 8325-4 (hysA) was inactivated in vitro with the insertion of the erythromycin determinant, ermC, from plasmid pE194. The hysA : : ermC mutation was introduced into S. aureus via a temperature-sensitive shuttle vector, where it underwent homologous recombination with the wild-type (w.t.) allele. The insertion of ermC in the chromosomal hysA locus was confirmed by Southern blot hybridization and the loss of HL activity was demonstrated macroscopically by a plate assay. The importance of HL for pathogenicity was assessed by comparing the virulence of the HL(-) mutant strain to that of the w.t. in an established mouse abscess model of S. aureus infection. A significantly higher cell recovery was obtained from lesions infected with the w.t. strain compared to the lesions infected with the HL(-) strain (P =0.01). Although the lesion areas from both groups were not significantly different (P=0.9) they were of different morphology. A colorimetric assay was used to measure HL activity from culture supernatants of the S. aureus 8325-4 strains w.t., WA250 (agr) and PC1839 (sar) grown in a chemically defined medium. HL activity reached a maximum in the w.t. strain during mid-exponential phase (t=5 h) and while it showed a 16-fold decrease in the agr mutant it increased 35-fold in the sar mutant background. These results strongly suggest that HL is a virulence factor which is important in the early stages of subcutaneous infections.

摘要

用来自质粒pE194的红霉素决定簇ermC在体外使金黄色葡萄球菌8325 - 4的透明质酸酶(HL)基因(hysA)失活。通过温度敏感型穿梭载体将hysA::ermC突变引入金黄色葡萄球菌,在那里它与野生型(w.t.)等位基因进行同源重组。通过Southern印迹杂交证实ermC插入染色体hysA位点,并通过平板试验宏观证明HL活性丧失。通过在已建立的金黄色葡萄球菌感染小鼠脓肿模型中比较HL(-)突变株与野生型的毒力,评估HL对致病性的重要性。与感染HL(-)菌株的病变相比,感染野生型菌株的病变获得了显著更高的细胞回收率(P = 0.01)。尽管两组的病变面积没有显著差异(P = 0.9),但它们的形态不同。采用比色法测定在化学限定培养基中生长的金黄色葡萄球菌8325 - 4野生型菌株、WA250(agr)和PC1839(sar)菌株培养上清液中的HL活性。HL活性在野生型菌株的指数中期(t = 5小时)达到最大值,在agr突变体中它下降了16倍,而在sar突变体背景中它增加了35倍。这些结果强烈表明HL是一种毒力因子,在皮下感染的早期阶段很重要。

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