Department of Immunology, Faculty of Medicine, Technion - Israel Institute of Technology, Haifa 31096, Israel.
Max Delbrück Center for Molecular Medicine, 13125 Berlin, Germany.
Cell Rep. 2016 Jul 12;16(2):419-431. doi: 10.1016/j.celrep.2016.05.084. Epub 2016 Jun 23.
PI3K activity determines positive and negative selection of B cells, a key process for immune tolerance and B cell maturation. Activation of PI3K is balanced by phosphatase and tensin homolog (Pten), the PI3K's main antagonistic phosphatase. Yet, the extent of feedback regulation between PI3K activity and Pten expression during B cell development is unclear. Here, we show that PI3K control of this process is achieved post-transcriptionally by an axis composed of a transcription factor (c-Myc), a microRNA (miR17-92), and Pten. Enhancing activation of this axis through overexpression of miR17-92 reconstitutes the impaired PI3K activity for positive selection in CD19-deficient B cells and restores most of the B cell developmental impairments that are evident in CD19-deficient mice. Using a genetic approach of deletion and complementation, we show that the c-Myc/miR17-92/Pten axis critically controls PI3K activity and the sensitivity of immature B cells to negative selection imposed by activation-induced cell death.
PI3K 活性决定了 B 细胞的正选择和负选择,这是免疫耐受和 B 细胞成熟的关键过程。PI3K 的激活受磷酸酶和张力蛋白同系物(Pten)的平衡调节,Pten 是 PI3K 的主要拮抗磷酸酶。然而,在 B 细胞发育过程中,PI3K 活性和 Pten 表达之间的反馈调节程度尚不清楚。在这里,我们表明,PI3K 通过由转录因子(c-Myc)、microRNA(miR17-92)和 Pten 组成的轴实现对该过程的转录后控制。通过过表达 miR17-92 增强该轴的激活,可重建 CD19 缺陷 B 细胞中受损的 PI3K 活性,以促进正选择,并恢复在 CD19 缺陷小鼠中明显的大多数 B 细胞发育缺陷。通过删除和互补的遗传方法,我们表明 c-Myc/miR17-92/Pten 轴对 PI3K 活性和未成熟 B 细胞对激活诱导的细胞死亡引起的负选择的敏感性具有关键的控制作用。