Niu Chao, Zhang Jiwang, Breslin Peter, Onciu Mihaela, Ma Zhigui, Morris Stephan Wade
Department of Pathology, St Jude Children's Research Hospital, 262 Danny Thomas Pl., Memphis, TN 38105, USA.
Blood. 2009 Sep 3;114(10):2087-96. doi: 10.1182/blood-2009-01-197921. Epub 2009 Jun 19.
RNA-binding motif protein 15 (RBM15) is involved in the RBM15-megakaryoblastic leukemia 1 fusion in acute megakaryoblastic leukemia. Although Rbm15 has been reported to be required for B-cell differentiation and to inhibit myeloid and megakaryocytic expansion, it is not clear what the normal functions of Rbm15 are in the regulation of hematopoietic stem cell (HSC) and megakaryocyte development. In this study, we report that Rbm15 may function in part through regulation of expression of the proto-oncogene c-Myc. Similar to c-Myc knockout (c-Myc-KO) mice, long-term (LT) HSCs are significantly increased in Rbm15-KO mice due to an apparent LT-HSC to short-term HSC differentiation defect associated with abnormal HSC-niche interactions caused by increased N-cadherin and beta(1) integrin expression on mutant HSCs. Both serial transplantation and competitive reconstitution capabilities of Rbm15-KO LT-HSCs are greatly compromised. Rbm15-KO and c-Myc-KO mice also share related abnormalities in megakaryocyte development, with mutant progenitors producing increased, abnormally small low-ploidy megakaryocytes. Consistent with a possible functional interplay between Rbm15 and c-Myc, the megakaryocyte increase in Rbm15-KO mice could be partially reversed by ectopic c-Myc. Thus, Rbm15 appears to be required for normal HSC-niche interactions, for the ability of HSCs to contribute normally to adult hematopoiesis, and for normal megakaryocyte development; these effects of Rbm15 on hematopoiesis may be mediated at least in part by c-Myc.
RNA结合基序蛋白15(RBM15)参与急性巨核细胞白血病中的RBM15-巨核母细胞白血病1融合。尽管已有报道称Rbm15是B细胞分化所必需的,并能抑制髓系和巨核细胞的扩增,但Rbm15在调节造血干细胞(HSC)和巨核细胞发育中的正常功能尚不清楚。在本研究中,我们报告Rbm15可能部分通过调节原癌基因c-Myc的表达发挥作用。与c-Myc基因敲除(c-Myc-KO)小鼠类似,Rbm15-KO小鼠中的长期(LT)HSC显著增加,这是由于明显的LT-HSC向短期HSC分化缺陷,该缺陷与突变HSC上N-钙黏着蛋白和β(1)整合素表达增加导致的异常HSC-龛相互作用有关。Rbm15-KO LT-HSC的连续移植和竞争性重建能力均受到极大损害。Rbm15-KO和c-Myc-KO小鼠在巨核细胞发育中也存在相关异常,突变祖细胞产生数量增加、异常小的低倍体巨核细胞。与Rbm15和c-Myc之间可能存在功能相互作用一致,异位表达c-Myc可部分逆转Rbm15-KO小鼠中巨核细胞的增加。因此,Rbm15似乎是正常HSC-龛相互作用、HSC正常参与成人造血的能力以及正常巨核细胞发育所必需的;Rbm15对造血的这些作用可能至少部分由c-Myc介导。