Department of Microbiology and Molecular Genetics, Mie University Graduate School of Medicine, Mie 514-8507, Japan.
Int J Oncol. 2012 Jan;40(1):53-62. doi: 10.3892/ijo.2011.1192. Epub 2011 Sep 7.
The BCR-ABL1 induces chronic myelogenous leukemia (CML) and Ph+ acute lymphoblastic leukemia (ALL). Recent studies revealed high ratios of loss of the IKZF1 gene which encodes IKAROS in BCR-ABL1+ ALL and lymphoblastic crisis (LBC) of CML. However, little is known about the cooperativity between the aberrant IKAROS and BCR-ABL1 in primary human hematopoietic cells. We investigated the effects of expression of BCR-ABL1 and/or IK6, a natural dominant negative isoform of IKAROS, on proliferation and differentiation of human CD34+ cord blood cells with or without human bone marrow-derived stromal cells which support early B cell differentiation. Cell proliferation was remarkably enhanced by co-expression of BCR-ABL1 and IK6, with reduced expression of glycophorin A and increased expression of CD41, especially on stromal cells, compared with expression of BCR-ABL1 alone that resulted in expansion of erythroid progenitors. Interestingly, p190BCR-ABL1 showed higher dependency on stromal cells to stimulate cell growth with IK6, than p210BCR-ABL1. Furthermore, the cooperation was found to depend on direct cell adhesive interaction of hematopoietic progenitors with stromal cells. These findings suggest that IK6 and BCR-ABL1 synergistically contribute to leukemogenesis in human bone marrow stromal microenvironment, and may provide a clue to elucidate the mechanisms of leukemogenesis of Ph+ ALL and CML-LBC.
BCR-ABL1 诱导慢性髓性白血病 (CML) 和 Ph+急性淋巴细胞白血病 (ALL)。最近的研究表明,在 BCR-ABL1+ALL 和 CML 的淋巴母细胞危机 (LBC) 中,IKZF1 基因缺失比例很高,该基因编码 IKAROS。然而,关于异常 IKAROS 与原发性人造血细胞中的 BCR-ABL1 的协同作用知之甚少。我们研究了表达 BCR-ABL1 和/或 IK6(IKAROS 的天然显性负性同工型)对人 CD34+脐血细胞增殖和分化的影响,这些细胞有或没有人骨髓源性基质细胞,后者支持早期 B 细胞分化。与单独表达 BCR-ABL1 导致红系祖细胞扩增相比,BCR-ABL1 和 IK6 的共表达显著增强了细胞增殖,同时降低了糖蛋白 A 的表达,增加了 CD41 的表达,特别是在基质细胞上。有趣的是,与 p210BCR-ABL1 相比,p190BCR-ABL1 显示出对基质细胞刺激细胞生长的更高依赖性,需要与 IK6 共同表达。此外,发现这种合作依赖于造血祖细胞与基质细胞之间的直接细胞黏附相互作用。这些发现表明,IK6 和 BCR-ABL1 协同促进人骨髓基质微环境中的白血病发生,并且可能为阐明 Ph+ALL 和 CML-LBC 的白血病发生机制提供线索。