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Transmembrane protein 63A is a partner protein of Haemonchus contortus galectin in the regulation of goat peripheral blood mononuclear cells

机译:跨膜蛋白63A是捻转血矛线菌半乳糖凝集素在调节山羊外周血单个核细胞中的伴侣蛋白

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Background Hco-gal-m and -f were two isoforms of galectin cloned from male and female Haemonchus contortus, respectively, and it was demonstrated that recombinant Hco-gal-m and -f could act as immune suppressors. However, little is known about the receptors or binding partners of these galectins in the host. The research of the molecular mechanisms that govern the interactions between these galectins and host molecules will fill a gap in our understanding how parasite galectins interact with host cells. Methods A yeast two-hybrid system was used to identify the binding partners of Hco-gal-m and -f in this research. The interaction between rHco-gal-m and candidate binding protein was validated by co-immunoprecipitation. The localization of transmembrane protein 63A (TMEM63A) in peripheral blood mononuclear cells (PBMCs) was detected by immunofluorescence. The distribution of TMEM63A in T cells, B cells and monocytes in PBMCs was detected by flow cytometry. The immunomodulatory effects of Hco-gal-m and TMEM63A on cell proliferation, migration, apoptosis, nitric oxide production and cytokine secretion were observed by co-incubation of rHco-gal-m and TMEM63A-siRNA with goat PBMCs and monocytes. Results We found that TMEM63A, a functionally unknown protein, from goat PBMCs could bind to Hco-gal-m and -f. Immunofluorescence showed that TMEM63A was localized to the cell membrane. Flow cytometric analysis revealed that TMEM63A was expressed in the majority of goat PBMCs. After using RNA interference to knockdown expression of TMEM63A, the PBMC proliferation and migration were significantly increased, while the influence of rHco-gal-m on monocyte phagocytosis, PBMC nitric oxide production and migration were potently blocked. In addition, the production of IL-10, IFN-γ and TGF-β induced by rHco-gal-m were also altered. Conclusions Our results show that TMEM63A is a binding partner of Hco-gal-m/f, and involved in the immune responses of host PBMCs induced by Hco-gal-m for the first time.
机译:背景Hco-gal-m和-f是分别从雄性和雌性弯曲杆菌中克隆的半乳糖凝集素的两个同工型,并证明重组Hco-gal-m和-f可以起到免疫抑制作用。但是,关于这些半乳糖凝集素在宿主中的受体或结合伴侣知之甚少。控制这些半乳糖凝集素与宿主分子之间相互作用的分子机制的研究将填补我们对寄生虫半乳糖凝集素如何与宿主细胞相互作用的理解的空白。方法采用酵母双杂交系统鉴定Hco-gal-m和-f的结合伴侣。通过共免疫沉淀法验证了rHco-gal-m与候选结合蛋白之间的相互作用。通过免疫荧光检测跨膜蛋白63A(TMEM63A)在外周血单个核细胞(PBMC)中的定位。通过流式细胞术检测TMEM63A在PBMC中的T细胞,B细胞和单核细胞中的分布。通过将rHco-gal-m和TMEM63A-siRNA与山羊PBMC和单核细胞共孵育,观察到Hco-gal-m和TMEM63A对细胞增殖,迁移,凋亡,一氧化氮生成和细胞因子分泌的免疫调节作用。结果我们发现山羊PBMCs中功能未知的蛋白TMEM63A可以与Hco-gal-m和-f结合。免疫荧光显示,TMEM63A位于细胞膜上。流式细胞仪分析显示TMEM63A在大多数山羊PBMC中表达。使用RNA干扰敲低TMEM63A的表达后,PBMC的增殖和迁移显着增加,而rHco-gal-m对单核细胞吞噬作用,PBMC一氧化氮产生和迁移的影响被有效阻断。此外,rHco-gal-m诱导的IL-10,IFN-γ和TGF-β的产生也发生了改变。结论我们的结果表明TMEM63A是Hco-gal-m / f的结合伴侣,并且首次参与了Hco-gal-m诱导的宿主PBMC的免疫反应。

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