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日本血吸虫雌雄虫虫体表蛋白的蛋白质组学分析。

Proteomic analysis of tegument-exposed proteins of female and male Schistosoma japonicum worms.

机构信息

Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Key Laboratory of Animal Parasitology, Ministry of Agriculture of China, Shanghai 200241, P.R. China.

出版信息

J Proteome Res. 2013 Nov 1;12(11):5260-70. doi: 10.1021/pr400476a. Epub 2013 Aug 16.

Abstract

The interplay between sexes is a prerequisite for female growth, reproductive maturation, and egg production, and the basis of schistosome pathopoiesis and propagation. The tegument is in direct contact with the host environment and its surface membranes are particularly crucial for schistosome survival in the definitive host. In this study, a streptavidin-biotin affinity purification technique combined with LC-MS/MS was used to analyze putative tegument-exposed proteins in female and male adult Schistosoma japonicum worms. In total, 179 proteins were identified in females and 300 in males, including 119 proteins common to both sexes, and 60 female biased and 181 male biased proteins. Some (e.g., serpin and CD36-like class B scavenger receptor) were involved in host-schistosome interactions, while some (e.g., gynecophoral canal protein) were important in the interplay between sexes. Gene Ontology analysis revealed that proteins involved in protein glycosylation and lysosome were highly expressed in females, while proteins involved in intracellular signal transduction, regulation of actin filament polymerization, and proteasome core complex were highly expressed in males. These results might elucidate physiological differences between the sexes. Our study provides new insights into schistosome growth and sexual maturity in the final host and permits the screening of vaccine candidates or drug targets for schistosomiasis.

摘要

性别之间的相互作用是雌性生长、生殖成熟和产卵的前提,也是血吸虫病发病机制和传播的基础。表皮与宿主环境直接接触,其表面膜对血吸虫在终宿主中的存活尤为关键。在这项研究中,我们使用链霉亲和素-生物素亲和纯化技术结合 LC-MS/MS 分析了雌性和雄性日本血吸虫成虫中可能暴露在外的表皮蛋白。总共在雌性中鉴定出 179 种蛋白,在雄性中鉴定出 300 种蛋白,包括 119 种两性共有蛋白,60 种雌性偏向蛋白和 181 种雄性偏向蛋白。其中一些(例如丝氨酸蛋白酶抑制剂和 CD36 样 B 类清道夫受体)参与了宿主与血吸虫的相互作用,而另一些(例如雌性生殖孔蛋白)则在性别之间的相互作用中发挥重要作用。GO 分析表明,参与蛋白糖基化和溶酶体的蛋白在雌性中高表达,而参与细胞内信号转导、肌动蛋白丝聚合调节和蛋白酶体核心复合物的蛋白在雄性中高表达。这些结果可能阐明了雌雄之间的生理差异。我们的研究为终宿主中血吸虫的生长和性成熟提供了新的见解,并允许筛选血吸虫病的疫苗候选物或药物靶点。

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