Chen Ching-ju, Tobiason Deborah M, Thomas Christopher E, Shafer William M, Seifert H Steven, Sparling P Frederick
Department of Medicine. Department of Microbiology and Immunology, School of Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7031, USA.
J Bacteriol. 2004 Feb;186(3):730-9. doi: 10.1128/JB.186.3.730-739.2004.
A spontaneous point mutation in pilQ (pilQ1) resulted in phenotypic suppression of a hemoglobin (Hb) receptor mutant (hpuAB mutant), allowing gonococci to grow on Hb as the sole source of iron. PilQ, formerly designated OMP-MC, is a member of the secretin family of proteins located in the outer membrane and is required for pilus biogenesis. The pilQ1 mutant also showed decreased piliation and transformation efficiency. Insertional inactivation of pilQ1 resulted in the loss of the Hb utilization phenotype and decreased entry of free heme. Despite the ability of the pilQ1 mutant to use Hb for iron acquisition and porphyrin, there was no demonstrable binding of Hb to the cell surface. The pilQ1 mutant was more sensitive to the toxic effect of free heme in growth medium and hypersensitive to the detergent Triton X-100 and multiple antibiotics. Double mutation in pilQ1 and tonB had no effect on these phenotypes, but a double pilQ1 pilT mutant showed a reduction in Hb-dependent growth and decreased sensitivity to heme and various antimicrobial agents. Insertional inactivation of wild-type pilQ also resulted in reduced entry of heme, Triton X-100, and some antibiotics. These results show that PilQ forms a channel that allows entry of heme and certain antimicrobial compounds and that a gain-of function point mutation in pilQ results in TonB-independent, PilT-dependent increase of entry.
pilQ基因(pilQ1)中的一个自发点突变导致血红蛋白(Hb)受体突变体(hpuAB突变体)的表型抑制,使淋球菌能够以Hb作为唯一铁源生长。PilQ以前被命名为OMP-MC,是位于外膜的分泌素家族蛋白质成员,是菌毛生物合成所必需的。pilQ1突变体还表现出菌毛形成减少和转化效率降低。pilQ1的插入失活导致Hb利用表型丧失和游离血红素摄取减少。尽管pilQ1突变体能够利用Hb获取铁和卟啉,但未检测到Hb与细胞表面的明显结合。pilQ1突变体对生长培养基中游离血红素的毒性作用更敏感,对去污剂Triton X-100和多种抗生素超敏感。pilQ1和tonB的双突变对这些表型没有影响,但pilQ1 pilT双突变体显示Hb依赖性生长减少,对血红素和各种抗菌剂的敏感性降低。野生型pilQ的插入失活也导致血红素、Triton X-100和一些抗生素的摄取减少。这些结果表明,PilQ形成一个通道,允许血红素和某些抗菌化合物进入,并且pilQ中的功能获得性点突变导致不依赖TonB、依赖PilT的摄取增加。