Mandik-Nayak L, Seo S j, Eaton-Bassiri A, Allman D, Hardy R R, Erikson J
The Wistar Institute, Philadelphia, PA 19104, USA.
J Immunol. 2000 Feb 1;164(3):1161-8. doi: 10.4049/jimmunol.164.3.1161.
Anti-dsDNA B cells are actively tolerized in nonautoimmune BALB/c mice, as manifested by their developmental arrest, follicular exclusion, and rapid turnover rate. Previously, we have documented changes in the maturation status and follicular localization of anti-dsDNA B cells in autoimmune-prone MRL (+/+ and lpr/lpr) mice. To determine whether these differences in developmental status and follicular localization affect the functional capacity of anti-dsDNA B cells, we have now compared their in vivo life spans and their responses to in vitro stimuli. Our study shows that although anti-dsDNA B cells from both BALB/c and MRL-+/+ mice are localized to the T/B interface, only those in BALB/c mice have a rapid turnover rate. Therefore, the immature status and not the exclusion from the B cell follicle correlates with a shortened life span. Interestingly, apoptotic anti-dsDNA B cells were not detected at the T/B interface in BALB/c mice, suggesting that they are not dying there. This study also demonstrates that anti-dsDNA B cells, regardless of maturation status or follicular localization, are able to proliferate and up-regulate the costimulatory molecule B7-2 in response to CD40 ligand and IL-4. Therefore, one of the critical in vivo differences between anti-dsDNA B cells in BALB/c and MRL-+/+ mice compared with MRL-lpr/lpr mice may be the availability of T cell help.
在非自身免疫性BALB/c小鼠中,抗双链DNA B细胞处于活跃的免疫耐受状态,表现为发育停滞、滤泡排斥和快速更新率。此前,我们已记录了自身免疫易感的MRL(+/+和lpr/lpr)小鼠中抗双链DNA B细胞成熟状态和滤泡定位的变化。为了确定发育状态和滤泡定位的这些差异是否影响抗双链DNA B细胞的功能能力,我们现在比较了它们在体内的寿命以及对体外刺激的反应。我们的研究表明,尽管来自BALB/c和MRL-+/+小鼠的抗双链DNA B细胞都定位于T/B界面,但只有BALB/c小鼠中的抗双链DNA B细胞具有快速更新率。因此,不成熟状态而非被排除在B细胞滤泡外与寿命缩短相关。有趣的是,在BALB/c小鼠的T/B界面未检测到凋亡的抗双链DNA B细胞,这表明它们并非在那里死亡。这项研究还表明,无论成熟状态或滤泡定位如何,抗双链DNA B细胞在受到CD40配体和IL-4刺激时都能够增殖并上调共刺激分子B7-2。因此,与MRL-lpr/lpr小鼠相比,BALB/c和MRL-+/+小鼠中抗双链DNA B细胞在体内的一个关键差异可能是T细胞辅助的可用性。