Xu Y, Leung C G, Lee D C, Kennedy B K, Crispino J D
Ben May Institute for Cancer Research, University of Chicago, Chicago, IL 60637, USA.
Leukemia. 2006 Jul;20(7):1261-9. doi: 10.1038/sj.leu.2404252. Epub 2006 May 4.
Chromosome condensation is essential for proper segregation of duplicated sister chromatids in mitosis. Mammalian erythroid maturation is also associated with gradual nuclear condensation. However, few proteins that are directly involved in chromosome condensation during erythropoiesis have been identified. In this report, we show that MTB (more than blood), which was initially isolated in a yeast two-hybrid screen for proteins that interact with the basic helix-loop-helix (bHLH) protein stem cell leukemia (SCL), and later identified as the murine homolog of the condensin II subunit CAP-G2, participates in erythroid cell development. MTB interacts with SCL and another hematopoietic bHLH protein, E12, and is recruited to the nucleus by SCL and E12. In addition, MTB can repress SCL/E12-mediated transcriptional activation. Consistent with the model that MTB may function together with SCL/E12 heterodimer during erythroid cell development, MTB is highly expressed in the erythroid lineage and is upregulated upon erythroid differentiation. Moreover, overexpression of MTB promotes the terminal differentiation of the murine erythroleukemia erythroid cell line. Together, these findings demonstrate that the condensin II subunit MTB/mCAP-G2 plays a novel function during erythropoiesis and suggest that key hematopoietic transcription factors such as SCL and E12 may regulate the terminal differentiation of hematopoietic cells through the interaction with condensin complexes.
染色体凝聚对于有丝分裂中复制后的姐妹染色单体正确分离至关重要。哺乳动物红细胞成熟也与细胞核逐渐凝聚相关。然而,在红细胞生成过程中直接参与染色体凝聚的蛋白质却鲜有被鉴定出来的。在本报告中,我们发现MTB(超过血液)最初是在酵母双杂交筛选中被分离出来的,用于筛选与碱性螺旋-环-螺旋(bHLH)蛋白干细胞白血病(SCL)相互作用的蛋白质,后来被鉴定为凝聚素II亚基CAP-G2的小鼠同源物,它参与红细胞发育。MTB与SCL以及另一种造血bHLH蛋白E12相互作用,并被SCL和E12招募至细胞核。此外,MTB能够抑制SCL/E12介导的转录激活。与MTB可能在红细胞发育过程中与SCL/E12异二聚体共同发挥作用的模型一致,MTB在红细胞谱系中高表达,且在红细胞分化时上调。而且,MTB的过表达促进小鼠红白血病红细胞系的终末分化。总之,这些发现表明凝聚素II亚基MTB/mCAP-G2在红细胞生成过程中发挥了新功能,并提示诸如SCL和E12等关键造血转录因子可能通过与凝聚素复合物相互作用来调节造血细胞的终末分化。