人中性粒细胞FcγRI(即CD64),Ig G Fc高亲和力受体之一,是早期诊断脓毒血症和系统性细菌感染的一个灵敏和特异的新标志物;目前,采用流式细胞计量术测定,难以在一般实验室开展。本研究旨在应用新型的体外筛选技术——指数富集配基的系统...人中性粒细胞FcγRI(即CD64),Ig G Fc高亲和力受体之一,是早期诊断脓毒血症和系统性细菌感染的一个灵敏和特异的新标志物;目前,采用流式细胞计量术测定,难以在一般实验室开展。本研究旨在应用新型的体外筛选技术——指数富集配基的系统进化(systematic evolution of ligands by exponential enrichment,SELEX)技术——从体外合成的随机寡核苷酸文库中筛选人FcγRI的高亲和力和高特异性的核酸适配体(aptamer)。本文以人FcγRI为靶标,将其固定在羧基活化磁珠上,进行SELEX筛选。经过8轮筛选,共获得3个重点研究的单克隆适配体。生物信息学分析结果显示,人FcγRI适配体的模拟二级结构以茎-环和G-四聚体为主,可能是FcγRI与适配体的作用位点,G-T错配常见。流式细胞计量术和荧光显微镜分析显示,筛选出的典型单克隆适配体解离常数(the dissociation constant,Kd)均达到纳摩尔水平,而且适配体只与脓毒血症中性粒细胞结合,具有良好的亲和力和特异性。本研究表明,通过SELEX技术,成功获取了人FcγRI特异性核酸适配体,为以此适配体为分子探针,进一步建立用于脓毒血症早期诊断的新方法奠定了基础。展开更多
Porcine reproductive and respiratory syndrome virus(PRRSV) shows characteristic antibody-dependent enhancement(ADE) of infection and causes porcine systemic inflammation, which is similar to a type I allergic reaction...Porcine reproductive and respiratory syndrome virus(PRRSV) shows characteristic antibody-dependent enhancement(ADE) of infection and causes porcine systemic inflammation, which is similar to a type I allergic reaction; however, the role of porcine FceεRI in ADE is still unclear. In this study, the expression of different Fc receptors(Fc Rs) on macrophages was investigated in a PRRSV 3D4/21 cell infection model in the presence or absence of PRRSV antibody. The transcription level of Fcc II and FceεRI was significantly up-regulated under PRRSV-antibody complex infection. Internalization and proliferation of PRRSV were promoted by the ADE mechanism when FceεRI was expressed in permissive 3D4/21 cells and the non-permissive cell line HEK 293T. Transcriptome sequencing data showed that the expression levels of AKT,ERK and other signal molecules in the anti-inflammatory pathway were significantly increased, especially in the cells infected with the PRRSV-antibody immune complex. Inflammatory regulatory molecules such as PLA2G6, LOX, TRPM8 and TRPM4 were significantly up-regulated following PRRSV infection but significantly down-regulated in the cells infected with the PRRSV-antibody immune complex. Our results demonstrated that FceεRI could be involved in PRRSV ADE, the antigen presenting process and regulation of the inflammatory response during PRRSV infection, which provides new insights into PRRSV infection mediated by FceεRI and the PRRSV-antibody immune complex.展开更多
文摘人中性粒细胞FcγRI(即CD64),Ig G Fc高亲和力受体之一,是早期诊断脓毒血症和系统性细菌感染的一个灵敏和特异的新标志物;目前,采用流式细胞计量术测定,难以在一般实验室开展。本研究旨在应用新型的体外筛选技术——指数富集配基的系统进化(systematic evolution of ligands by exponential enrichment,SELEX)技术——从体外合成的随机寡核苷酸文库中筛选人FcγRI的高亲和力和高特异性的核酸适配体(aptamer)。本文以人FcγRI为靶标,将其固定在羧基活化磁珠上,进行SELEX筛选。经过8轮筛选,共获得3个重点研究的单克隆适配体。生物信息学分析结果显示,人FcγRI适配体的模拟二级结构以茎-环和G-四聚体为主,可能是FcγRI与适配体的作用位点,G-T错配常见。流式细胞计量术和荧光显微镜分析显示,筛选出的典型单克隆适配体解离常数(the dissociation constant,Kd)均达到纳摩尔水平,而且适配体只与脓毒血症中性粒细胞结合,具有良好的亲和力和特异性。本研究表明,通过SELEX技术,成功获取了人FcγRI特异性核酸适配体,为以此适配体为分子探针,进一步建立用于脓毒血症早期诊断的新方法奠定了基础。
基金supported by the National Natural Science Foundation of China (31272540)the underprop project of Tianjin Science and Technology Committee in China (16YFZCNC00640)
文摘Porcine reproductive and respiratory syndrome virus(PRRSV) shows characteristic antibody-dependent enhancement(ADE) of infection and causes porcine systemic inflammation, which is similar to a type I allergic reaction; however, the role of porcine FceεRI in ADE is still unclear. In this study, the expression of different Fc receptors(Fc Rs) on macrophages was investigated in a PRRSV 3D4/21 cell infection model in the presence or absence of PRRSV antibody. The transcription level of Fcc II and FceεRI was significantly up-regulated under PRRSV-antibody complex infection. Internalization and proliferation of PRRSV were promoted by the ADE mechanism when FceεRI was expressed in permissive 3D4/21 cells and the non-permissive cell line HEK 293T. Transcriptome sequencing data showed that the expression levels of AKT,ERK and other signal molecules in the anti-inflammatory pathway were significantly increased, especially in the cells infected with the PRRSV-antibody immune complex. Inflammatory regulatory molecules such as PLA2G6, LOX, TRPM8 and TRPM4 were significantly up-regulated following PRRSV infection but significantly down-regulated in the cells infected with the PRRSV-antibody immune complex. Our results demonstrated that FceεRI could be involved in PRRSV ADE, the antigen presenting process and regulation of the inflammatory response during PRRSV infection, which provides new insights into PRRSV infection mediated by FceεRI and the PRRSV-antibody immune complex.