Host-Parasite Interactions Group, Instituto de Investigação e Inovação em Saúde, Universidade do Porto, 4200-135 Porto, Portugal.
Instituto de Biologia Molecular e Celular, Universidade do Porto, 4200-135 Porto, Portugal.
Int J Mol Sci. 2022 May 20;23(10):5711. doi: 10.3390/ijms23105711.
The sole currently approved malaria vaccine targets the circumsporozoite protein-the protein that densely coats the surface of sporozoites, the parasite stage deposited in the skin of the mammalian host by infected mosquitoes. However, this vaccine only confers moderate protection against clinical diseases in children, impelling a continuous search for novel candidates. In this work, we studied the importance of the membrane-associated erythrocyte binding-like protein (MAEBL) for infection by sporozoites. Using transgenic parasites and live imaging in mice, we show that the absence of MAEBL reduces hemolymph sporozoite infectivity to mice. Moreover, we found that knockout (-) sporozoites display reduced adhesion, including to cultured hepatocytes, which could contribute to the defects in multiple biological processes, such as in gliding motility, hepatocyte wounding, and invasion. The - defective phenotypes in mosquito salivary gland and liver infection were reverted by genetic complementation. Using a parasite line expressing a C-terminal myc-tagged MAEBL, we found that MAEBL levels peak in midgut and hemolymph parasites but drop after sporozoite entry into the salivary glands, where the labeling was found to be heterogeneous among sporozoites. MAEBL was found associated, not only with micronemes, but also with the surface of mature sporozoites. Overall, our data provide further insight into the role of MAEBL in sporozoite infectivity and may contribute to the design of future immune interventions.
目前唯一获得批准的疟疾疫苗针对的是环子孢子蛋白——这种蛋白密集覆盖在子孢子的表面,子孢子是被感染的蚊子在哺乳动物宿主体内的皮肤中沉积的寄生虫阶段。然而,这种疫苗仅对儿童的临床疾病提供中等程度的保护,促使人们不断寻找新的候选疫苗。在这项工作中,我们研究了膜相关的红细胞结合样蛋白(MAEBL)对疟原虫子孢子感染的重要性。我们利用转基因寄生虫和在小鼠中的活体成像,表明 MAEBL 的缺失会降低血腔子孢子对小鼠的感染性。此外,我们发现敲除(-)子孢子的黏附性降低,包括对培养的肝细胞的黏附性,这可能导致多个生物学过程的缺陷,如滑行运动、肝细胞损伤和入侵。在蚊唾液腺和肝脏感染中,-缺陷表型通过基因互补得到恢复。利用表达 C 末端 myc 标记的 MAEBL 的寄生虫系,我们发现 MAEBL 水平在中肠和血腔寄生虫中达到峰值,但在子孢子进入唾液腺后下降,在唾液腺中,子孢子的标记呈现异质性。MAEBL 不仅与微线体相关,也与成熟子孢子的表面相关。总的来说,我们的数据提供了对 MAEBL 在子孢子感染性中的作用的进一步了解,并可能有助于未来免疫干预措施的设计。