Cancer and Inflammation Program, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Frederick, MD 21701, USA.
Blood. 2012 Jun 7;119(23):5467-77. doi: 10.1182/blood-2012-01-401547. Epub 2012 Apr 27.
Multiple transcription factors regulate B-cell commitment, which is coordinated with myeloid-erythroid lineage differentiation. NF-κB has long been speculated to regulate early B-cell development; however, this issue remains controversial. IκB kinase-α (IKKα) is required for splenic B-cell maturation but not for BM B-cell development. In the present study, we unexpectedly found defective BM B-cell development and increased myeloid-erythroid lineages in kinase-dead IKKα (KA/KA) knock-in mice. Markedly increased cytosolic p100, an NF-κB2-inhibitory form, and reduced nuclear NF-κB p65, RelB, p50, and p52, and IKKα were observed in KA/KA splenic and BM B cells. Several B- and myeloid-erythroid-cell regulators, including Pax5, were deregulated in KA/KA BM B cells. Using fetal liver and BM congenic transplantations and deleting IKKα from early hematopoietic cells in mice, this defect was identified as being B cell-intrinsic and an early event during hematopoiesis. Reintroducing IKKα, Pax5, or combined NF-κB molecules promoted B-cell development but repressed myeloid-erythroid cell differentiation in KA/KA BM B cells. The results of the present study demonstrate that IKKα regulates B-lineage commitment via combined canonical and noncanonical NF-κB transcriptional activities to target Pax5 expression during hematopoiesis.
多种转录因子调节 B 细胞的定向分化,该过程与髓系-红细胞系分化相协调。NF-κB 长期以来被推测调节早期 B 细胞的发育;然而,这个问题仍存在争议。IKKα(IκB 激酶-α)对于脾脏 B 细胞的成熟是必需的,但对于骨髓 B 细胞的发育并非如此。在本研究中,我们出人意料地发现激酶失活的 IKKα(KA/KA)敲入小鼠的骨髓 B 细胞发育缺陷,并伴有髓系-红细胞系的增加。在 KA/KA 脾和骨髓 B 细胞中观察到细胞质 p100(NF-κB2 的抑制形式)显著增加,核 NF-κB p65、RelB、p50 和 p52 以及 IKKα 减少。KA/KA 骨髓 B 细胞中的几个 B 细胞和髓系-红细胞细胞调节剂,包括 Pax5,均失调。通过胎肝和骨髓同基因移植以及在小鼠的早期造血细胞中删除 IKKα,发现该缺陷是 B 细胞内在的,并且是造血过程中的早期事件。重新引入 IKKα、Pax5 或联合 NF-κB 分子可促进 B 细胞的发育,但抑制 KA/KA 骨髓 B 细胞中髓系-红细胞系的分化。本研究的结果表明,IKKα 通过联合的经典和非经典 NF-κB 转录活性调节 B 细胞谱系的定向分化,从而在造血过程中靶向 Pax5 的表达。