Department of Neurology, Mayo Clinic College of Medicine, Rochester, Minnesota 55905, USA.
Glia. 2010 Nov 15;58(15):1782-93. doi: 10.1002/glia.21048.
Human remyelination promoting IgM mAbs target oligodendrocytes (OLs) and function in animal models of multiple sclerosis (MS). However, their mechanism of action is unknown. This study seeks to identify the cellular mechanism of action of a recombinant human IgM on OL survival.
Binding of rHIgM22 to the surface of rat OLs was studied by co-localization with various markers. RHIgM22-mediated effects on apoptotic signaling in OLs, differentiation markers, and signaling molecules were detected by Western blotting and immunoprecipitation.
RHIgM22 co-localized with integrin β3 but not other integrin β-chains in OLs. Downstream of integrin β3 we identified Src family kinase (SFK) Lyn as a key player of rHIgM22-mediated actions in OLs. Lyn immunoprecipitated in a complex together with integrin αvβ3 and PDGFαR. Lyn expression was 9-fold up-regulated and Lyn activation was 3-fold higher inrHIgM22-treated OL cultures compared with controls. RHIgM22 inhibited apoptotic signaling by greater than 10-fold reduction of caspase-3 and capsase-9 cleavage and reduced by 4-fold expression of differentiation markers MBP and MOG in OLs. SFK inhibitors PP2 and SU6656 inhibited Lyn activity and restored caspase-cleavage in OLs. A human IgM that did not promote remyelination and medium wereused as controls.
rHIgM22 prevented apoptotic signaling andinhibited OL differentiation by Lyn implying thatIgM-mediated remyelination is due toprotection of OPC and OLs rather than promotion of OPC differentiation.
促进髓鞘形成的人源性 IgM mAb 靶向少突胶质细胞(OL),并在多发性硬化症(MS)动物模型中发挥作用。然而,其作用机制尚不清楚。本研究旨在确定重组人 IgM 对 OL 存活的作用机制。
通过与各种标记物共定位研究 rHIgM22 与大鼠 OL 表面的结合。通过 Western blot 和免疫沉淀检测 rHIgM22 对 OL 凋亡信号、分化标志物和信号分子的影响。
rHIgM22 与 OL 中的整合素β3 共定位,但与其他整合素β链不共定位。在整合素β3 的下游,我们鉴定出Src 家族激酶(SFK)Lyn 是 rHIgM22 介导 OL 作用的关键分子。Lyn 与整合素αvβ3 和 PDGFαR 形成复合物进行免疫沉淀。与对照组相比,rHIgM22 处理的 OL 培养物中 Lyn 表达上调 9 倍,激活增加 3 倍。rHIgM22 通过将 caspase-3 和 caspase-9 切割减少 10 倍以上来抑制凋亡信号,并将 OL 中的分化标志物 MBP 和 MOG 的表达减少 4 倍。SFK 抑制剂 PP2 和 SU6656 抑制 Lyn 活性并恢复 OL 中的 caspase 切割。未促进髓鞘形成的人源性 IgM 和培养基用作对照。
rHIgM22 通过 Lyn 阻止凋亡信号并抑制 OL 分化,这表明 IgM 介导的髓鞘形成是由于对 OPC 和 OL 的保护,而不是促进 OPC 分化。