Bothe Miriam, Dutow Pavel, Pich Andreas, Genth Harald, Klos Andreas
Institute for Medical Microbiology and Hospital Epidemiology, Hannover Medical School, Carl-Neuberg-Str. 1, D-30625 Hannover, Germany.
Institute for Toxicology, Hannover Medical School, Carl-Neuberg-Str. 1, D-30625 Hannover, Germany.
Toxins (Basel). 2015 Feb 17;7(2):621-37. doi: 10.3390/toxins7020621.
The Gram-negative, intracellular bacterium Chlamydia trachomatis causes acute and chronic urogenital tract infection, potentially leading to infertility and ectopic pregnancy. The only partially characterized cytotoxin CT166 of serovar D exhibits a DXD motif, which is important for the enzymatic activity of many bacterial and mammalian type A glycosyltransferases, leading to the hypothesis that CT166 possess glycosyltransferase activity. CT166-expressing HeLa cells exhibit actin reorganization, including cell rounding, which has been attributed to the inhibition of the Rho-GTPases Rac/Cdc42. Exploiting the glycosylation-sensitive Ras(27H5) antibody, we here show that CT166 induces an epitope change in Ras, resulting in inhibited ERK and PI3K signaling and delayed cell cycle progression. Consistent with the hypothesis that these effects strictly depend on the DXD motif, CT166 with the mutated DXD motif causes neither Ras-ERK inhibition nor delayed cell cycle progression. In contrast, CT166 with the mutated DXD motif is still capable of inhibiting cell migration, suggesting that CT166 with the mutated DXD motif cannot be regarded as inactive in any case. Taken together, CT166 affects various fundamental cellular processes, strongly suggesting its importance for the intracellular survival of chlamydia.
革兰氏阴性细胞内细菌沙眼衣原体可引起急慢性泌尿生殖道感染,可能导致不孕和异位妊娠。血清型D中唯一部分特征化的细胞毒素CT166具有一个DXD基序,这对许多细菌和哺乳动物A型糖基转移酶的酶活性很重要,由此推测CT166具有糖基转移酶活性。表达CT166的HeLa细胞表现出肌动蛋白重组,包括细胞变圆,这被归因于对Rho-GTPases Rac/Cdc42的抑制。利用糖基化敏感的Ras(27H5)抗体,我们在此表明CT166诱导Ras表位变化,导致ERK和PI3K信号传导受到抑制以及细胞周期进程延迟。与这些效应严格依赖于DXD基序的假设一致,具有突变DXD基序的CT166既不会导致Ras-ERK抑制,也不会导致细胞周期进程延迟。相反,具有突变DXD基序的CT166仍然能够抑制细胞迁移,这表明具有突变DXD基序的CT166在任何情况下都不能被视为无活性。综上所述,CT166影响各种基本细胞过程,强烈表明其对衣原体细胞内存活的重要性。