Duan Biyan, Niu Haitao, Xu Zhiwei, Sharpe Arlene H, Croker Byron P, Sobel Eric S, Morel Laurence
Department of Pathology, Immunology and Laboratory Medicine, University of Florida College of Medicine, Gainesville, FL 32610-0275, USA.
Lab Invest. 2008 Sep;88(9):1008-20. doi: 10.1038/labinvest.2008.62. Epub 2008 Jul 7.
Marginal zone (MZ) B cells contain a large number of autoreactive clones and the expansion of this compartment has been associated with autoimmunity. MZ B cells also efficiently transport blood-borne antigen to the follicles where they activate T cells and differentiate into plasma cells. Using the B6.NZM2410.Sle1.Sle2.Sle3 (B6.TC) model of lupus, we show that the IgM+ CD1d(hi)/MZ B-cell compartment is expanded, and a large number of them reside inside the follicles. Contrary to the peripheral B-cell subset distribution and their activation status, the intrafollicular location of B6.TC IgM+ CD1d(hi)/MZ B cells depends on both bone marrow- and stromal-derived factors. Among the factors responsible for this intrafollicular location, we have identified an increased response to CXCL13 by B6.TC MZ B cells and a decreased expression of VCAM-1 on stromal cells in the B6.TC MZ. However, the reduced number of MZ macrophages observed in B6.TC MZs was independent of the IgM+ CD1d(hi)/B-cell location. B7-2 but not B7-1 deficiency restored IgM+ CD1d(hi)/MZ B-cell follicular exclusion in B6.TC mice, and it correlated with tolerance to dsDNA and a significant reduction of autoimmune pathology. These results suggest that follicular exclusion of IgM+ CD1d(hi)/MZ B cells is an important B-cell tolerance mechanism, and that B7-2 signaling is involved in breaching this tolerance checkpoint.
边缘区(MZ)B细胞包含大量自身反应性克隆,该细胞区室的扩增与自身免疫相关。MZ B细胞还能有效地将血源性抗原转运至滤泡,在那里它们激活T细胞并分化为浆细胞。利用狼疮的B6.NZM2410.Sle1.Sle2.Sle3(B6.TC)模型,我们发现IgM+ CD1d(hi)/MZ B细胞区室扩增,且其中大量细胞位于滤泡内。与外周B细胞亚群分布及其激活状态相反,B6.TC IgM+ CD1d(hi)/MZ B细胞在滤泡内的定位取决于骨髓和基质来源的因子。在导致这种滤泡内定位的因子中,我们发现B6.TC MZ B细胞对CXCL13的反应增强,且B6.TC MZ中基质细胞上VCAM-1的表达降低。然而,在B6.TC MZ中观察到的MZ巨噬细胞数量减少与IgM+ CD1d(hi)/B细胞的定位无关。B7-2而非B7-1缺陷恢复了B6.TC小鼠中IgM+ CD1d(hi)/MZ B细胞的滤泡排斥,且这与对双链DNA的耐受性及自身免疫病理的显著减轻相关。这些结果表明,IgM+ CD1d(hi)/MZ B细胞的滤泡排斥是一种重要的B细胞耐受机制,且B7-2信号传导参与了突破这一耐受检查点的过程。