Arnal Audrey, Villanueva-Lizama Liliana, Teh-Poot Christian, Herrera Claudia, Dumonteil Eric
Laboratorio de Parasitología Centro de Investigaciones Regionales "Dr Hideyo Noguchi" Universidad Autónoma de Yucatán Mérida Mexico.
Departamento de Ecología de la Biodiversidad Instituto de Ecología Universidad Nacional Autónoma de México Ciudad de México México.
Evol Appl. 2020 Sep 10;13(10):2663-2672. doi: 10.1111/eva.13068. eCollection 2020 Dec.
Chagas disease, caused by the protozoan parasite , is a major public health problem in the Americas, and existing drugs have severe limitations. In this context, a vaccine would be an attractive alternative for disease control. One of the difficulties in developing an effective vaccine lies in the high genetic diversity of . In this study, we evaluated the level of sequence diversity of the leading vaccine candidate Tc24 in multiple parasite strains.
We quantified its level of polymorphism within and between discrete typing units (DTUs) and how this potential polymorphism is structured by different selective pressures. We observed a low level of polymorphism of Tc24 protein, weakly associated with parasite DTUs, but not with the geographic origin of the strains. In particular, Tc24 was under strong purifying selection pressure and predicted CD8 T-cell epitopes were mostly conserved. Tc24 strong conservation may be associated with structural/functional constrains to preserve EF hand domains and their calcium-binding loops, and Tc24 is likely important for the parasite fitness.
Together, these results show that a vaccine based on Tc24 is likely to be effective against a wide diversity of parasite strains across the American continent, and further development of this vaccine candidate should be a high priority.
由原生动物寄生虫引起的恰加斯病是美洲的一个主要公共卫生问题,现有药物存在严重局限性。在此背景下,疫苗将是控制该疾病的一个有吸引力的选择。开发有效疫苗的困难之一在于该寄生虫的高遗传多样性。在本研究中,我们评估了主要候选疫苗Tc24在多个寄生虫菌株中的序列多样性水平。
我们量化了其在离散分型单元(DTUs)内部和之间的多态性水平,以及这种潜在多态性是如何由不同选择压力构建的。我们观察到Tc24蛋白的多态性水平较低,与寄生虫DTUs的关联性较弱,但与菌株的地理起源无关。特别是,Tc24处于强烈的纯化选择压力之下,预测的CD8 T细胞表位大多是保守的。Tc24的高度保守可能与保留EF手结构域及其钙结合环的结构/功能限制有关,并且Tc24可能对寄生虫的适应性很重要。
总之,这些结果表明基于Tc24的疫苗可能对美洲大陆的多种寄生虫菌株有效,并且该候选疫苗的进一步开发应作为高度优先事项。