Tanaka Hirokazu, Matsumura Itaru, Itoh Kiminari, Hatsuyama Asako, Shikamura Masayuki, Satoh Yusuke, Heike Toshio, Nakahata Tatsutoshi, Kanakura Yuzuru
Department of Regenerative Medicine, Institute of Biomedical Research and Innovation, Kobe, Japan.
Stem Cells. 2006 Nov;24(11):2592-602. doi: 10.1634/stemcells.2006-0434.
HOX transcription factors play important roles in the self-renewal of hematopoietic cells. HOX proteins interact with the non-HOX homeobox protein PBX1 to regulate, both positively and negatively, the expression of target genes. In this study, we synthesized a decoy peptide containing the YPWM motif from HOX proteins (decoy HOX [decHOX]), which was predicted to act as a HOX mimetic, and analyzed its effects on self-renewal of human cord blood CD34(+) cells. We were able to deliver decHOX into approximately 70% of CD34(+) cells. By examining the expression of HOX target genes c-myc and p21(waf1/cip1), we confirmed that decHOX enhanced HOX functions. After 7 days of culture in serum-free medium containing a cytokine cocktail, cultures treated with decHOX had approximately twofold-increased numbers of CD34(+) cells and primitive multipotent progenitor cells compared with control cells. Furthermore, decHOX-treated cells reconstituted hematopoiesis in nonobese diabetic/severe combined immunodeficiency mice more rapidly and more effectively (more than twofold greater efficiency, as determined by a limiting dilution method) than control cells. decHOX-treated cells were also able to repopulate secondary recipients. Together, these results indicate that in combination with growth factors and/or other approaches, decHOX might be a useful new tool for the ex vivo expansion of hematopoietic stem/progenitor cells.
HOX转录因子在造血细胞的自我更新中发挥重要作用。HOX蛋白与非HOX同源异型盒蛋白PBX1相互作用,对靶基因的表达进行正向和负向调节。在本研究中,我们合成了一种含有来自HOX蛋白的YPWM基序的诱饵肽(诱饵HOX [decHOX]),预计其可作为HOX模拟物,并分析了其对人脐血CD34(+)细胞自我更新的影响。我们能够将decHOX递送至约70%的CD34(+)细胞中。通过检测HOX靶基因c-myc和p21(waf1/cip1)的表达,我们证实decHOX增强了HOX功能。在含有细胞因子混合物的无血清培养基中培养7天后,与对照细胞相比,用decHOX处理的培养物中CD34(+)细胞和原始多能祖细胞的数量增加了约两倍。此外,与对照细胞相比,用decHOX处理的细胞在非肥胖糖尿病/严重联合免疫缺陷小鼠中更快速、更有效地重建了造血功能(通过极限稀释法测定,效率提高了两倍以上)。用decHOX处理的细胞也能够重新填充二级受体。总之,这些结果表明,与生长因子和/或其他方法联合使用时,decHOX可能是体外扩增造血干/祖细胞的一种有用的新工具。