Division of Hygiene and Medical Microbiology, Innsbruck Medical University, Innsbruck, Austria.
Infect Immun. 2010 Oct;78(10):4294-301. doi: 10.1128/IAI.00488-10. Epub 2010 Jul 19.
Hemolytic-uremic syndrome (HUS) is a life-threatening disorder characterized by hemolytic anemia, thrombocytopenia, and renal insufficiency. It is caused mainly by infections with enterohemorrhagic Escherichia coli (EHEC). Recently, Shiga toxin 2, the best-studied virulence factor of EHEC, was reported to interact with complement, implying that complement may be involved in the pathogenesis of EHEC-induced HUS. The aim of the present study was to investigate whether or not the serine protease EspP, an important virulence factor of EHEC, interacts with complement proteins. EspP did not have any effect on the integrity of factor H or factor I. However, EspP was shown to cleave purified C3/C3b and C5. Cleavage of the respective complement proteins also occurred in normal human serum (NHS) as a source of C3/C3b or C5 or when purified complement proteins were added to the supernatant of an EspP-producing wild-type strain. Edman degradation allowed unequivocal mapping of all three main C3b fragments but not of the three main C5 fragments. Complement activation was significantly downregulated in all three pathways for C5-depleted serum to which C5, preincubated with EspP, was added (whereas C5 preincubated with an EspP mutant was able to fully reconstitute complement activation). This indicates that EspP markedly destroyed the functional activity, as measured by a commercial total complement enzyme-linked immunosorbent assay (Wieslab). Downregulation of complement by EspP in vivo may influence the colonization of EHEC bacteria in the gut or the disease severity of HUS.
溶血尿毒综合征(HUS)是一种危及生命的疾病,其特征为溶血性贫血、血小板减少和肾功能不全。它主要由产志贺毒素 2 的肠出血性大肠杆菌(EHEC)感染引起。最近,研究报道了志贺毒素 2,即 EHEC 中研究最充分的毒力因子,与补体相互作用,这表明补体可能参与了 EHEC 诱导的 HUS 的发病机制。本研究旨在探讨 EHEC 的重要毒力因子丝氨酸蛋白酶 EspP 是否与补体蛋白相互作用。EspP 对因子 H 或因子 I 的完整性没有任何影响。然而,EspP 被证明可以切割纯化的 C3/C3b 和 C5。当以正常人血清(NHS)作为 C3/C3b 或 C5 的来源,或当纯化的补体蛋白添加到 EspP 产生的野生型菌株的上清液中时,也会在 NHS 中发生相应的补体蛋白的切割。Edman 降解允许明确映射所有三个主要的 C3b 片段,但不是三个主要的 C5 片段。补体激活在所有三条 C5 耗竭血清途径中都显著下调,其中添加了与 EspP 预孵育的 C5(而与 EspP 突变体预孵育的 C5 能够完全重建补体激活)。这表明 EspP 显著破坏了功能活性,如通过商业总补体酶联免疫吸附测定法(Wieslab)测量的那样。EspP 在体内对补体的下调可能会影响 EHEC 细菌在肠道中的定植或 HUS 的疾病严重程度。