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Loss of IKKβ but Not NF-κB p65 Skews Differentiation towards Myeloid over Erythroid Commitment and Increases Myeloid Progenitor Self-Renewal and Functional Long-Term Hematopoietic Stem Cells

机译:IKKβ的丢失而非NF-κBp65的丢失使类红素偏向于骨髓并增加了骨髓祖细胞的自我更新和功能性长期造血干细胞

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摘要

NF-κB is an important regulator of both differentiation and function of lineage-committed hematopoietic cells. Targeted deletion of IκB kinase (IKK) β results in altered cytokine signaling and marked neutrophilia. To investigate the role of IKKβ in regulation of hematopoiesis, we employed Mx1-Cre mediated IKKβ conditional knockout mice. As previously reported, deletion of IKKβ in hematopoietic cells results in neutrophilia, and we now also noted decreased monocytes and modest anemia. Granulocyte-macrophage progenitors (GMPs) accumulated markedly in bone marrow of IKKβ deleted mice whereas the proportion and number of megakaryocyte-erythrocyte progenitors (MEP) decreased. Accordingly, we found a significantly reduced frequency of proerythroblasts and basophilic and polychromatic erythroblasts, and IKKβ-deficient bone marrow cells yielded a significantly decreased number of BFU-E compared to wild type. These changes are associated with elevated expression of C/EBPα, Gfi1, and PU.1 and diminished Gata1, Klf1, and SCL/Tal1 in IKKβ deficient Lineage-Sca1+c-Kit+ (LSK) cells. In contrast, no effect on erythropoiesis or expression of lineage-related transcription factors was found in marrow lacking NF-κB p65. Bone marrow from IKKβ knockout mice has elevated numbers of phenotypic long and short term hematopoietic stem cells (HSC). A similar increase was observed when IKKβ was deleted after marrow transplantation into a wild type host, indicating cell autonomous expansion. Myeloid progenitors from IKKβ- but not p65-deleted mice demonstrate increased serial replating in colony-forming assays, indicating increased cell autonomous self-renewal capacity. In addition, in a competitive repopulation assay deletion of IKKβ resulted in a stable advantage of bone marrow derived from IKKβ knockout mice. In summary, loss of IKKβ resulted in significant effects on hematopoiesis not seen upon NF-κB p65 deletion. These include increased myeloid and reduced erythroid transcription factors, skewing differentiation towards myeloid over erythroid differentiation, increased progenitor self-renewal, and increased number of functional long term HSCs. These data inform ongoing efforts to develop IKK inhibitors for clinical use.
机译:NF-κB是谱系定型造血细胞分化和功能的重要调节剂。 IκB激酶(IKK)β的靶向缺失导致细胞因子信号改变和嗜中性粒细胞增多。为了研究IKKβ在调节造血中的作用,我们采用了Mx1-Cre介导的IKKβ条件性基因敲除小鼠。如先前报道,造血细胞中IKKβ的缺失会导致中性粒细胞减少,我们现在还注意到单核细胞减少和中度贫血。粒细胞巨噬细胞祖细胞(GMP)在IKKβ缺失小鼠的骨髓中显着积累,而巨核细胞-红细胞祖细胞(MEP)的比例和数量下降。因此,我们发现原红细胞,嗜碱性和多色红细胞的频率显着降低,并且与野生型相比,IKKβ缺陷型骨髓细胞产生的BFU-E数量显着降低。这些变化与IKKβ缺陷谱系- Sca1 + c -Kit + (LSK)单元。相反,在缺乏NF-κBp65的骨髓中,未发现对红细胞生成或谱系相关转录因子表达的影响。来自IKKβ基因敲除小鼠的骨髓的表型长期和短期造血干细胞(HSC)数量增加。当将IKKβ骨髓移植到野生型宿主后缺失时,观察到类似的增加,表明细胞自主扩增。来自IKKβ-但未缺失p65的小鼠的骨髓祖细胞在集落形成试验中显示出增加的序列重铺,表明细胞自主自我更新能力增强。另外,在竞争性的种群重新测定中,IKKβ的缺失导致源自IKKβ基因敲除小鼠的骨髓具有稳定的优势。总而言之,IKKβ的丧失导致了对造血功能的显着影响,这在NF-κBp65缺失时未见。这些包括增加的髓样和减少的红系转录因子,使分化偏向于髓系,而不是红系分化,增加祖细胞的自我更新,以及增加功能性长期HSC。这些数据为开发用于临床的IKK抑制剂提供了持续的努力。

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