Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Pretoria, South Africa.
Department of Medicine, Division of Infectious Diseases Washington University in Saint Louis, School of Medicine, Saint Louis, Missouri, United States of Ameirca.
PLoS One. 2023 Jun 21;18(6):e0287100. doi: 10.1371/journal.pone.0287100. eCollection 2023.
Enterotoxigenic Escherichia coli (ETEC) is a diarrhoeal pathogen associated with high morbidity and mortality especially among young children in developing countries. At present, there is no vaccine for ETEC. One candidate vaccine antigen, EtpA, is a conserved secreted adhesin that binds to the tips of flagellae to bridge ETEC to host intestinal glycans. EtpA is exported through a Gram-negative, two-partner secretion system (TPSS, type Vb) comprised of the secreted EtpA passenger (TpsA) protein and EtpB (TpsB) transporter that is integrated into the outer bacterial membrane. TpsA proteins share a conserved, N-terminal TPS domain followed by an extensive C-terminal domain with divergent sequence repeats. Two soluble, N-terminal constructs of EtpA were prepared and analysed respectively including residues 67 to 447 (EtpA67-447) and 1 to 606 (EtpA1-606). The crystal structure of EtpA67-447 solved at 1.76 Å resolution revealed a right-handed parallel β-helix with two extra-helical hairpins and an N-terminal β-strand cap. Analyses by circular dichroism spectroscopy confirmed the β-helical fold and indicated high resistance to chemical and thermal denaturation as well as rapid refolding. A theoretical AlphaFold model of full-length EtpA largely concurs with the crystal structure adding an extended β-helical C-terminal domain after an interdomain kink. We propose that robust folding of the TPS domain upon secretion provides a template to extend the N-terminal β-helix into the C-terminal domains of TpsA proteins.
肠产毒性大肠杆菌(ETEC)是一种腹泻病原体,与发展中国家的高发病率和死亡率,尤其是幼儿有关。目前,尚无针对 ETEC 的疫苗。一种候选疫苗抗原 EtpA 是一种保守的分泌性黏附素,可与鞭毛尖端结合,将 ETEC 与宿主肠道聚糖桥接。EtpA 通过革兰氏阴性、双伙伴分泌系统(TPSS,类型 Vb)输出,该系统由分泌的 EtpA 乘客(TpsA)蛋白和整合到外膜中的 EtpB(TpsB)转运蛋白组成。TpsA 蛋白共享保守的 N 端 TPS 结构域,其后是具有不同序列重复的广泛 C 端结构域。分别制备并分析了 EtpA 的两个可溶性、N 端构建体,分别包括残基 67 至 447(EtpA67-447)和 1 至 606(EtpA1-606)。在 1.76 Å分辨率下解决的 EtpA67-447 的晶体结构揭示了一个右手平行β-螺旋,带有两个额外的螺旋发夹和一个 N 端β-链帽。圆二色性光谱分析证实了β-螺旋折叠,并表明对化学和热变性具有很高的抗性以及快速重折叠。全长 EtpA 的理论 AlphaFold 模型在很大程度上与晶体结构一致,在结构域之间的拐点后添加了扩展的β-螺旋 C 端结构域。我们提出,在分泌过程中 TPS 结构域的坚固折叠为将 N 端β-螺旋延伸到 TpsA 蛋白的 C 端结构域提供了模板。