The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia.
Cell Death Differ. 2012 Jun;19(6):1060-8. doi: 10.1038/cdd.2011.198. Epub 2012 Jan 13.
The pro-apoptotic BH3-only protein Bim has a major role in hematopoietic homeostasis, particularly in the lymphocyte compartment, where it strongly affects immune function. The three major Bim isoforms (Bim(EL), Bim(L) and Bim(S)) are generated by alternative splicing. Bim(EL), the most abundant isoform, contains a unique sequence that has been reported to be the target of phosphorylation by several MAP kinases. In particular, Erk1/2 has been shown to interact with Bim(EL) through the DEF2 domain of Bim(EL) and specifically phosphorylate this isoform, thereby targeting it for ubiquitination and proteasomal degradation. To examine the physiological importance of this mechanism of regulation and of the alternative splicing of Bim, we have generated several Bim knock-in mouse strains and analyzed their hematopoietic system. Although mutation in the DEF2 domain reduces Bim(EL) degradation in some circumstances, this mutation did not significantly increase Bim's pro-apoptotic activity in vivo nor impact on the homeostasis of the hematopoietic system. We also show that Bim(EL) and Bim(L) are interchangeable, and that Bim(S) is dispensable for the function of Bim. Hence, we conclude that physiological regulation of Bim relies on mechanisms independent of its alternative splicing or the Erk-dependent phosphorylation of Bim(EL).
促凋亡 BH3 仅蛋白 Bim 在造血稳态中具有重要作用,特别是在淋巴细胞区室中,它强烈影响免疫功能。三种主要的 Bim 同工型(Bim(EL)、Bim(L)和 Bim(S))通过选择性剪接产生。Bim(EL)是最丰富的同工型,含有一个独特的序列,据报道该序列是几种 MAP 激酶磷酸化的靶标。特别是,Erk1/2 已被证明通过 Bim(EL)的 DEF2 结构域与 Bim(EL)相互作用,并特异性地磷酸化该同工型,从而将其靶向泛素化和蛋白酶体降解。为了研究这种调节机制和 Bim 选择性剪接的生理重要性,我们生成了几种 Bim 基因敲入小鼠品系,并分析了它们的造血系统。尽管 DEF2 结构域中的突变减少了某些情况下 Bim(EL)的降解,但该突变并未显著增加 Bim 在体内的促凋亡活性,也未影响造血系统的稳态。我们还表明,Bim(EL)和 Bim(L)是可互换的,Bim(S)对于 Bim 的功能是可有可无的。因此,我们得出结论,Bim 的生理调节依赖于独立于其选择性剪接或 Erk 依赖性 Bim(EL)磷酸化的机制。