Długosz Ewa, Milewska Małgorzata, Bąska Piotr
Division of Parasitology and Invasive Diseases, Department of Preclinical Sciences, Institute of Veterinary Medicine, Warsaw University of Life Sciences-SGGW, 02-786 Warsaw, Poland.
Division of Pharmacology and Toxicology, Department of Preclinical Sciences, Institute of Veterinary Medicine, Warsaw University of Life Sciences-SGGW, 02-786 Warsaw, Poland.
Pathogens. 2021 Jul 28;10(8):949. doi: 10.3390/pathogens10080949.
is a zoonotic roundworm that infects humans and dogs all over the world. Upon infection, larvae migrate to various tissues leading to different clinical syndromes. The host-parasite interactions underlying the process of infection remain poorly understood. Here, we describe the application of a yeast two-hybrid assay to screen a human cDNA library and analyse the interactome of larval molecules. Our data identifies 16 human proteins that putatively interact with the parasite. These molecules were associated with major biological processes, such as protein processing, transport, cellular component organisation, immune response and cell signalling. Some of these identified interactions are associated with the development of a Th2 response, neutrophil activity and signalling in immune cells. Other interactions may be linked to neurodegenerative processes observed during neurotoxocariasis, and some are associated with lung pathology found in infected hosts. Our results should open new areas of research and provide further data to enable a better understanding of this complex and underestimated disease.
是一种感染全球人类和犬类的人畜共患蛔虫。感染后,幼虫迁移到各种组织,导致不同的临床综合征。感染过程中宿主与寄生虫的相互作用仍知之甚少。在此,我们描述了酵母双杂交试验在筛选人cDNA文库和分析幼虫分子相互作用组中的应用。我们的数据鉴定出16种可能与该寄生虫相互作用的人类蛋白质。这些分子与主要生物学过程相关,如蛋白质加工、运输、细胞成分组织、免疫反应和细胞信号传导。其中一些已确定的相互作用与Th2反应的发展、中性粒细胞活性和免疫细胞信号传导有关。其他相互作用可能与在神经型旋毛虫病期间观察到的神经退行性过程有关,还有一些与感染宿主中发现的肺部病理学有关。我们的结果应开辟新的研究领域,并提供更多数据,以便更好地理解这种复杂且被低估的疾病。