Junt Tobias, Fink Katja, Förster Reinhold, Senn Beatrice, Lipp Martin, Muramatsu Masamichi, Zinkernagel Rolf M, Ludewig Burkhard, Hengartner Hans
Institute of Experimental Immunology, Zürich, Switzerland.
J Immunol. 2005 Dec 1;175(11):7109-16. doi: 10.4049/jimmunol.175.11.7109.
The chemokine receptor CXCR5 and its ligand CXCL13 define the structure of B cell follicles within secondary lymphoid organs. Here, we examined the impact of CXCR5 on antiviral B cell responses in vivo. CXCR5-/- mice showed a normal production of IgM and IgG acutely after infection with vesicular stomatitis virus (VSV) and developed VSV-specific germinal centers. However, impaired Ig class switch and Ab production were observed under conditions of limited availability of Ag (i.e., after immunization with nonreplicating viral particles or soluble Ag). Adoptive transfer of CXCR5-deficient, VSV-specific B and Th cells demonstrated that CXCR5 expression on both B and Th cells is required for an efficient Ig class switch. These experiments revealed that CXCR5 is critical for the coordinated interaction of antiviral T and B cells through its impact on initial B cell expansion and the recruitment of Ag-specific B and Th cells to germinal centers.
趋化因子受体CXCR5及其配体CXCL13决定了次级淋巴器官内B细胞滤泡的结构。在此,我们研究了CXCR5对体内抗病毒B细胞反应的影响。感染水疱性口炎病毒(VSV)后,CXCR5基因敲除小鼠急性感染期IgM和IgG的产生正常,并形成了VSV特异性生发中心。然而,在抗原供应有限的情况下(即在用非复制性病毒颗粒或可溶性抗原免疫后),观察到Ig类别转换和抗体产生受损。CXCR5缺陷的、VSV特异性B细胞和Th细胞的过继转移表明,B细胞和Th细胞上的CXCR5表达对于有效的Ig类别转换是必需的。这些实验表明,CXCR5通过影响初始B细胞扩增以及将抗原特异性B细胞和Th细胞募集到生发中心,对抗病毒T细胞和B细胞的协同相互作用至关重要。