Amin Rupesh H, Schlissel Mark S
Department of Molecular & Cell Biology, University of California at Berkeley, Berkeley, California 94720, USA.
Nat Immunol. 2008 Jun;9(6):613-22. doi: 10.1038/ni.1612. Epub 2008 May 11.
Regulated expression of the recombinase RAG-1 and RAG-2 proteins is necessary for generating the vast repertoire of antigen receptors essential for adaptive immunity. Here, a retroviral cDNA library screen showed that the stress-regulated protein GADD45a activated transcription of the genes encoding RAG-1 and RAG-2 in transformed pro-B cells by a pathway requiring the transcription factor Foxo1. Foxo1 directly activated transcription of the Rag1-Rag2 locus throughout early B cell development, and a decrease in Foxo1 protein diminished the induction of Rag1 and Rag2 transcription in a model of receptor editing. We also found that transcription of Rag1 and Rag2 was repressed at the pro-B cell and immature B cell stages by the kinase Akt through its 'antagonism' of Foxo1 function. Thus, Foxo1 is a key regulator of Rag1 and Rag2 transcription in primary B cells.
重组酶RAG-1和RAG-2蛋白的调控表达对于产生适应性免疫所必需的大量抗原受体库是必要的。在此,一项逆转录病毒cDNA文库筛选显示,应激调节蛋白GADD45a通过一条需要转录因子Foxo1的途径,激活了转化的前B细胞中编码RAG-1和RAG-2的基因的转录。在整个早期B细胞发育过程中,Foxo1直接激活Rag1-Rag2基因座的转录,在受体编辑模型中,Foxo1蛋白的减少减弱了Rag1和Rag2转录的诱导。我们还发现,在原B细胞和未成熟B细胞阶段,激酶Akt通过其对Foxo1功能的“拮抗”作用抑制了Rag1和Rag2的转录。因此,Foxo1是原代B细胞中Rag1和Rag2转录的关键调节因子。