Department of Rheumatology, Institute for Inflammation Research, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.
Immunology. 2009 Sep;128(1 Suppl):e661-9. doi: 10.1111/j.1365-2567.2009.03056.x. Epub 2009 Jan 23.
While our previous studies have demonstrated that complement activation induced by complement receptors type 2 (CR2/CD21) and 1 (CR1/CD35) results in C3-fragment deposition and membrane attack complex (MAC) formation in human B cells, the consequences of these events for B-cell functions remain unknown. In the present study, we show that CR2-induced complement activation results in membrane depolarization, as indicated by annexin V binding, with kinetics similar to those of C3-fragment deposition and different from those of MAC formation. On the other hand, like MAC formation, depolarization requires activation of complement via the alternative pathway, as indicated by total inhibition upon neutralization of factor D, and is abrogated by combined blockade of CR1 and CR2, but not of either receptor alone. The membrane depolarization is not associated with the apoptosis of B cells, as examined by co-staining with APO-2.7 or by the TdT-mediated biotin-dUTP nick-end labelling (TUNEL) assay. Confocal microscopy revealed that depolarization and C3 deposition, unlike MAC deposition, are limited to restricted areas on the B-cell surface. Double staining revealed a close association between the C3-fragment patches and membrane depolarization, as well as redistribution of lipid rafts to these areas. We propose that these events may play a role in the regulation of B-cell signalling and cross-talk with T cells.
虽然我们之前的研究表明,补体受体 2(CR2/CD21)和 1(CR1/CD35)诱导的补体激活导致人 B 细胞中 C3 片段沉积和膜攻击复合物(MAC)的形成,但这些事件对 B 细胞功能的影响仍不清楚。在本研究中,我们表明 CR2 诱导的补体激活导致膜去极化,如 Annexin V 结合所表明的,其动力学与 C3 片段沉积相似,与 MAC 形成的动力学不同。另一方面,与 MAC 形成一样,去极化需要通过替代途径激活补体,如因子 D 中和导致的完全抑制所表明的,并且通过同时阻断 CR1 和 CR2 来阻断,但单独阻断任一受体则不行。膜去极化与 B 细胞凋亡无关,如通过与 APO-2.7 共染色或通过 TdT 介导的生物素-dUTP 缺口末端标记(TUNEL)测定所检查的。共聚焦显微镜显示,与 MAC 沉积不同,去极化和 C3 沉积仅限于 B 细胞表面的受限区域。双重染色显示 C3 片段斑与膜去极化之间密切相关,以及脂质筏向这些区域的重新分布。我们提出这些事件可能在调节 B 细胞信号转导和与 T 细胞的串扰中发挥作用。