Wu Yongzhong, El Shikh Mohey Eldin M, El Sayed Rania M, Best Al M, Szakal Andras K, Tew John G
Department of Microbiology and Immunology, Virginia Commonwealth University, Richmond, VA 23298, USA.
Int Immunol. 2009 Jun;21(6):745-56. doi: 10.1093/intimm/dxp041. Epub 2009 May 21.
Reports that follicular dendritic cells (FDCs) produce IL-6 prompted the hypotheses that immune complexes (ICs) induce FDCs to produce IL-6 and that FDC-IL-6 promotes germinal center (GC) reactions, somatic hypermutation (SHM) and IgG production. FDCs were activated in vitro by addition of ICs and FDC-IL-6 production was determined. Wild-type (WT) and IL-6 knockout (KO) mice, as well as chimeras with WT and IL-6 KO cells, were immunized with (4-hydroxy-3-nitrophenyl)-acetyl (NP)-chicken gamma globulin (CGG) and used to study anti-(4-hydroxy-3-iodo-5-nitrophenyl) acetyl (NIP) responses, GC formation and SHM in the VH186.2 gene segment in Ig-gamma. FDC-IL-6 increased when FDCs encountered ICs. At low immunogen dose, 1 microg NP-CGG per mouse, the IgG anti-NIP response in IL-6 KO mice was low and immunohistochemistry revealed a reduction in both the number and size of GCs. The physiological relevance of FDC-IL-6 was apparent in the chimeric mice where total splenocytes from WT mice were unable to provide the IL-6 needed for normal IgG and GC responses in IL-6 KO animals with IL-6-defective FDCs. Moreover, the rate of mutation decreased from 18 to 8.9 mutations per 1000 bases (P < 0.001) in WT versus IL-6 KO mice. Addition of anti-IL-6 to GC reactions in vitro reduced antibody levels and SHM from 3.5 to 0.65 mutations per 1000 bases (P < 0.02). Thus, the absence of FDC-IL-6 correlated with a reduction in SHM that coincided with the reduction in GCs and specific anti-NIP. This is the first study to document that ICs induce FDC-IL-6 and that FDC-derived IL-6 is physiologically relevant in generating optimal GC reactions, SHM and IgG levels.
有报道称滤泡树突状细胞(FDCs)可产生白细胞介素-6(IL-6),这引发了如下假说:免疫复合物(ICs)诱导FDCs产生IL-6,且FDC衍生的IL-6促进生发中心(GC)反应、体细胞超突变(SHM)及IgG产生。通过添加ICs在体外激活FDCs,并检测FDC-IL-6的产生。用(4-羟基-3-硝基苯基)-乙酰基(NP)-鸡γ球蛋白(CGG)免疫野生型(WT)和IL-6基因敲除(KO)小鼠,以及具有WT和IL-6 KO细胞的嵌合体小鼠,并用于研究抗-(4-羟基-3-碘-5-硝基苯基)乙酰基(NIP)反应、GC形成及Ig-γ中VH186.2基因片段的SHM。当FDCs与ICs相遇时,FDC-IL-6增加。在低免疫原剂量下,即每只小鼠1μg NP-CGG,IL-6 KO小鼠中的IgG抗-NIP反应较低,免疫组织化学显示GC的数量和大小均减少。FDC-IL-6的生理相关性在嵌合小鼠中很明显,在这些小鼠中,来自WT小鼠的全脾细胞无法为具有IL-6缺陷FDCs的IL-6 KO动物提供正常IgG和GC反应所需的IL-6。此外,WT小鼠与IL-6 KO小鼠相比,突变率从每1000个碱基18个突变降至8.9个突变(P < 0.001)。在体外向GC反应中添加抗IL-6可降低抗体水平,且SHM从每1000个碱基3.5个突变降至0.65个突变(P < 0.02)。因此,FDC-IL-6的缺失与SHM的减少相关,同时伴随着GC和特异性抗-NIP的减少。这是第一项证明ICs诱导FDC-IL-6且FDC衍生的IL-6在产生最佳GC反应、SHM和IgG水平方面具有生理相关性的研究。