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重组沙眼衣原体主要外膜蛋白融合抗原 CTH522 异常自组装成蛋白纳米颗粒。

Unusual Self-Assembly of the Recombinant Chlamydia trachomatis Major Outer Membrane Protein-Based Fusion Antigen CTH522 Into Protein Nanoparticles.

机构信息

Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen Ø, Denmark.

Department of Vaccine Development, Statens Serum Institut, Artillerivej 5, DK-2300 Copenhagen S, Denmark.

出版信息

J Pharm Sci. 2018 Jun;107(6):1690-1700. doi: 10.1016/j.xphs.2018.02.005. Epub 2018 Feb 13.

Abstract

Sexually transmitted Chlamydia trachomatis infects more than 100 million people annually, and untreated chlamydia infections can cause severe complications. Therefore, there is an urgent need for a chlamydia vaccine. The Ctrachomatis major outer membrane protein (MOMP) is highly immunogenic but is a challenging vaccine candidate by being an integral membrane protein, and the immunogenicity depends on a correctly folded structure. We investigated the biophysical properties of the recombinant MOMP-based fusion antigen CTH522, which is tested in early human clinical trials. It consists of a truncated and cysteine-free version of MOMP fused to 4 variable domains from serovars D-G. In the native state, CTH522 did not exist as a monomer but showed an unusual self-assembly into nanoparticles with a negative zeta potential. In contrast to the β-barrel structure of MOMP, native CTH522 contained no well-defined secondary structural elements, and no thermal transitions were measurable. Chemical unfolding resulted in monomers that upon removal of the denaturant self-assembled into higher order structures, comparable to the structure of the native protein. The conformation of CTH522 in nanoparticles is thus not entirely random and contains structural elements stabilized via denaturant-disruptable hydrophobic interactions. In conclusion, CTH522 has an unusual quaternary structure of supramolecular self-assemblies.

摘要

每年有超过 1 亿人感染性传播的沙眼衣原体,未经治疗的衣原体感染会导致严重的并发症。因此,迫切需要一种衣原体疫苗。沙眼衣原体主要外膜蛋白(MOMP)具有高度免疫原性,但作为一种整合膜蛋白,它是一种具有挑战性的疫苗候选物,其免疫原性取决于正确折叠的结构。我们研究了重组 MOMP 基融合抗原 CTH522 的生物物理特性,该抗原正在早期人体临床试验中进行测试。它由 MOMP 的截断和无半胱氨酸版本与血清型 D-G 的 4 个可变结构域融合而成。在天然状态下,CTH522 不以单体形式存在,而是异常地自组装成带有负 ζ 电位的纳米颗粒。与 MOMP 的β-桶结构相反,天然 CTH522 不含明确定义的二级结构元件,也无法测量到热转变。化学变性导致单体在去除变性剂后自组装成更高阶的结构,类似于天然蛋白质的结构。因此,纳米颗粒中 CTH522 的构象并非完全随机,而是包含通过变性剂破坏的疏水性相互作用稳定的结构元件。总之,CTH522 具有超分子自组装的异常四级结构。

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