Linterman Michelle A, Rigby Robert J, Wong Raphael K, Yu Di, Brink Robert, Cannons Jennifer L, Schwartzberg Pamela L, Cook Matthew C, Walters Giles D, Vinuesa Carola G
Division of Immunology and Genetics, The John Curtin School of Medical Research, Australian National University, Canberra, ACT 2601, Australia.
J Exp Med. 2009 Mar 16;206(3):561-76. doi: 10.1084/jem.20081886. Epub 2009 Feb 16.
Production of high-affinity pathogenic autoantibodies appears to be central to the pathogenesis of lupus. Because normal high-affinity antibodies arise from germinal centers (GCs), aberrant selection of GC B cells, caused by either failure of negative selection or enhanced positive selection by follicular helper T (T(FH)) cells, is a plausible explanation for these autoantibodies. Mice homozygous for the san allele of Roquin, which encodes a RING-type ubiquitin ligase, develop GCs in the absence of foreign antigen, excessive T(FH) cell numbers, and features of lupus. We postulated a positive selection defect in GCs to account for autoantibodies. We first demonstrate that autoimmunity in Roquin(san/san) (sanroque) mice is GC dependent: deletion of one allele of Bcl6 specifically reduces the number of GC cells, ameliorating pathology. We show that Roquin(san) acts autonomously to cause accumulation of T(FH) cells. Introduction of a null allele of the signaling lymphocyte activation molecule family adaptor Sap into the sanroque background resulted in a substantial and selective reduction in sanroque T(FH) cells, and abrogated formation of GCs, autoantibody formation, and renal pathology. In contrast, adoptive transfer of sanroque T(FH) cells led to spontaneous GC formation. These findings identify T(FH) dysfunction within GCs and aberrant positive selection as a pathway to systemic autoimmunity.
高亲和力致病性自身抗体的产生似乎是狼疮发病机制的核心。由于正常的高亲和力抗体产生于生发中心(GCs),因此,阴性选择失败或滤泡辅助性T(T(FH))细胞增强阳性选择所导致的GC B细胞异常选择,是这些自身抗体产生的一个合理原因。编码一种RING型泛素连接酶的Roquin的san等位基因纯合的小鼠,在没有外来抗原的情况下会形成GCs,T(FH)细胞数量过多,并出现狼疮特征。我们推测GCs中存在阳性选择缺陷以解释自身抗体的产生。我们首先证明,Roquin(san/san)(sanroque)小鼠的自身免疫是GC依赖性的:删除Bcl6的一个等位基因会特异性减少GC细胞数量,改善病理状况。我们表明,Roquin(san)自主发挥作用导致T(FH)细胞积累。将信号淋巴细胞激活分子家族衔接蛋白Sap的无效等位基因引入sanroque背景,导致sanroque T(FH)细胞大量选择性减少,并消除了GCs的形成、自身抗体的形成和肾脏病理变化。相反,sanroque T(FH)细胞的过继转移导致自发GC形成。这些发现确定了GCs内的T(FH)功能障碍和异常阳性选择是系统性自身免疫的一条途径。