Department of Biochemistry, University of Lausanne, Epalinges, Switzerland.
PLoS One. 2013 Apr 19;8(4):e61350. doi: 10.1371/journal.pone.0061350. Print 2013.
Myeloid cells express the TNF family ligands BAFF/BLyS and APRIL, which exert their effects on B cells at different stages of differentiation via the receptors BAFFR, TACI (Transmembrane Activator and CAML-Interactor) and/or BCMA (B Cell Maturation Antigen). BAFF and APRIL are proteins expressed at the cell membrane, with both extracellular and intracellular domains. Therefore, receptor/ligand engagement may also result in signals in ligand-expressing cells via so-called "reverse signalling". In order to understand how TACI-Fc (atacicept) technically may mediate immune stimulation instead of suppression, we investigated its potential to activate reverse signalling through BAFF and APRIL. BAFFR-Fc and TACI-Fc, but not Fn14-Fc, reproducibly stimulated the ERK and other signalling pathways in bone marrow-derived mouse macrophages. However, these effects were independent of BAFF or APRIL since the same activation profile was observed with BAFF- or APRIL-deficient cells. Instead, cell activation correlated with the presence of high molecular mass forms of BAFFR-Fc and TACI-Fc and was strongly impaired in macrophages deficient for Fc receptor gamma chain. Moreover, a TACI-Fc defective for Fc receptor binding elicited no detectable signal. Although these results do not formally rule out the existence of BAFF or APRIL reverse signalling (via pathways not tested in this study), they provide no evidence in support of reverse signalling and point to the importance of using appropriate specificity controls when working with Fc receptor-expressing myeloid cells.
髓样细胞表达 TNF 家族配体 BAFF/BLyS 和 APRIL,它们通过受体 BAFFR、TACI(跨膜激活剂和 CAML 相互作用蛋白)和/或 BCMA(B 细胞成熟抗原)在 B 细胞分化的不同阶段发挥作用。BAFF 和 APRIL 是表达在细胞膜上的蛋白质,具有细胞外和细胞内结构域。因此,受体/配体的结合也可能通过所谓的“反向信号转导”在配体表达细胞中产生信号。为了了解 TACI-Fc(atacicept)如何在技术上介导免疫刺激而不是抑制,我们研究了它通过 BAFF 和 APRIL 激活反向信号转导的潜力。BAFFR-Fc 和 TACI-Fc,但不是 Fn14-Fc,可重复性地刺激骨髓来源的小鼠巨噬细胞中的 ERK 和其他信号通路。然而,这些效应独立于 BAFF 或 APRIL,因为在缺乏 BAFF 或 APRIL 的细胞中观察到相同的激活谱。相反,细胞激活与 BAFFR-Fc 和 TACI-Fc 的高分子质量形式的存在相关,并且在缺乏 Fc 受体 γ 链的巨噬细胞中受到强烈抑制。此外,Fc 受体结合缺陷的 TACI-Fc 不会引发可检测到的信号。尽管这些结果并没有正式排除 BAFF 或 APRIL 反向信号转导的存在(通过本研究未测试的途径),但它们没有提供支持反向信号转导的证据,并指出在使用表达 Fc 受体的髓样细胞时使用适当的特异性对照的重要性。