Sukupolvi-Petty Soila, Grass Susan, St Geme Joseph W
Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, 660 S. Euclid Avenue, St. Louis, MO 63110, USA.
J Bacteriol. 2006 Jun;188(11):3870-7. doi: 10.1128/JB.01968-05.
Haemophilus influenzae type b is a common cause of invasive bacterial disease, especially among children in underdeveloped countries. The type b polysaccharide capsule is a polymer of ribose and ribitol-5-phosphate and is a critical determinant of virulence. Expression of the type b capsule is dependent upon the cap b locus, which consists of three functionally distinct regions, designated regions 1 to 3. Region 3 contains the hcsA and hcsB genes, which share significant homology with genes that have been implicated in encapsulation in other pathogenic bacteria but have unclear functions. In this study, we inactivated hcsA alone, hcsB alone, and both hcsA and hcsB together and examined the effects of these mutations on polysaccharide transport and bacterial virulence properties. Inactivation of hcsA alone resulted in accumulation of polysaccharide in the periplasm and a partial decrease in surface-associated polysaccharide, whereas inactivation of hcsB alone or of both hcsA and hcsB together resulted in accumulation of polysaccharide in the periplasm and complete loss of surface-associated polysaccharide. All mutations eliminated serum resistance and abrogated bacteremia and mortality in neonatal rats. These results indicate that the hcsA and hcsB gene products have complementary functions involved in the transport of polysaccharide across the outer membrane and are essential for virulence.
b型流感嗜血杆菌是侵袭性细菌疾病的常见病因,在欠发达国家的儿童中尤为常见。b型多糖荚膜是核糖和5-磷酸核糖醇的聚合物,是毒力的关键决定因素。b型荚膜的表达取决于cap b基因座,该基因座由三个功能不同的区域组成,分别命名为区域1至3。区域3包含hcsA和hcsB基因,它们与其他致病细菌中参与荚膜形成的基因具有显著同源性,但功能尚不清楚。在本研究中,我们分别使hcsA、hcsB单独失活,以及使hcsA和hcsB一起失活,并研究了这些突变对多糖转运和细菌毒力特性的影响。单独使hcsA失活导致多糖在周质中积累,表面相关多糖部分减少,而单独使hcsB失活或使hcsA和hcsB一起失活则导致多糖在周质中积累,表面相关多糖完全丧失。所有突变均消除了血清抗性,并消除了新生大鼠的菌血症和死亡率。这些结果表明,hcsA和hcsB基因产物在多糖跨外膜转运中具有互补功能,并且对毒力至关重要。