Narvi E, Nera K-P, Terho P, Mustonen L, Granberg J, Lassila O
Turku Graduate School of Biomedical Sciences, University of Turku, Turku, Finland.
Scand J Immunol. 2007 Jun;65(6):503-13. doi: 10.1111/j.1365-3083.2007.01929.x.
The Ikaros family transcription factor Aiolos is important for B cell function, since B cells of Aiolos-null mutant mice exhibit an activated phenotype, enhanced B-cell receptor (BCR) signalling response and develop a systemic lupus erythematosus (SLE) type autoimmune disease. Aiolos has also been reported to interact with anti-apoptotic Bcl-2 and Bcl-x(L) in T cells, but whether Aiolos regulates cell death has not been studied in B cells. Here we show that the disruption of Aiolos in the DT40 B cell line induces a cell death sensitive phenotype, as the Aiolos(-/-) cells are more prone to apoptosis by nutritional stress, BCR cross-linking, UV- or gamma-irradiation. Furthermore, the Aiolos(-/-) cells have defective Ig gene conversion providing evidence that Aiolos is needed for the somatic diversification of the BCR repertoire. The re-expression of DNA-binding isoform Aio-1 was able to restore the gene conversion defect of the Aiolos-deficient cells, whereas the introduction of dominant negative isofom Aio-2 had no effect on gene conversion, thus demonstrating the functional importance of alternative splicing within Ikaros family. Although the Aiolos(-/-) cells exhibit reduced expression of activation-induced cytidine deaminase (AID), ectopic AID overexpression did not restore the gene conversion defect in the Aiolos(-/-) cells. Our findings indicate that Aiolos may regulate gene conversion in an AID independent manner.
伊卡洛斯家族转录因子艾奥洛斯对B细胞功能很重要,因为艾奥洛斯基因敲除突变小鼠的B细胞表现出活化表型、增强的B细胞受体(BCR)信号反应,并发展出系统性红斑狼疮(SLE)类型的自身免疫性疾病。据报道,艾奥洛斯在T细胞中还与抗凋亡蛋白Bcl-2和Bcl-x(L)相互作用,但艾奥洛斯是否调节B细胞中的细胞死亡尚未得到研究。在此我们表明,DT40 B细胞系中艾奥洛斯的缺失诱导了细胞死亡敏感表型,因为艾奥洛斯基因敲除(Aiolos-/-)细胞更容易因营养应激、BCR交联、紫外线或γ射线照射而发生凋亡。此外,艾奥洛斯基因敲除细胞的Ig基因转换存在缺陷,这证明了艾奥洛斯是BCR库体细胞多样化所必需的。DNA结合异构体Aio-1的重新表达能够恢复艾奥洛斯缺陷细胞的基因转换缺陷,而引入显性负性异构体Aio-2对基因转换没有影响,从而证明了伊卡洛斯家族内可变剪接的功能重要性。虽然艾奥洛斯基因敲除细胞中活化诱导胞苷脱氨酶(AID)的表达降低,但异位过表达AID并不能恢复艾奥洛斯基因敲除细胞中的基因转换缺陷。我们的研究结果表明,艾奥洛斯可能以不依赖AID的方式调节基因转换。