Ono Y, Fukuhara N, Yoshie O
Shionogi Institute for Medical Science, 2-5-1 Mishima, Settsu-shi, Osaka 566, Japan.
J Biol Chem. 1997 Feb 14;272(7):4576-81. doi: 10.1074/jbc.272.7.4576.
TAL1, which is frequently activated in T cell acute lymphoblastic leukemia (T-ALL), encodes lineage-specific basic helix-loop-helix (bHLH) proteins that bind specifically to E-box DNA motif upon dimerization with ubiquitous basic helix-loop-helix proteins E47 or E12. RBTN1 and RBTN2, also frequently activated in T-ALL, encode proteins only with tandem cysteine-rich LIM domains. We found that aberrant expression of TAL1 detected in 11 out of 14 T-ALL cell lines was invariably accompanied by that of either RBTN1 or RBTN2. Forced expression of TAL1 together with RBTN1 or RBTN2, but not TAL1 alone, strongly induced artificial reporter genes in a TAL1/RBTN-negative T-ALL cell line, HPB-ALL. Such collaborative transcriptional activity of TAL1 and RBTN was not, however, observed in non-T cell lines, suggesting further involvement of some T cell-specific cofactors. In this context, we carried out preliminary evaluation of a potential role of the T cell-specific GATA-binding protein, GATA3, in the transcriptional activity of TAL1 and RBTN. We also showed that coexpression of TAL1 and RBTN1 in HPB-ALL strongly induced TALLA1, a highly specific T-ALL marker whose positivity correlated 100% with ectopic expression of TAL1 among various T-ALL cell lines. Collectively, ectopic TAL1 and RBTN1 or -2, together with some endogenous T cell-specific cofactors like GATA3, constitute a highly collaborative set of transcription factors whose aberrant activity in T cells may lead to leukemogenesis by modulating expression of downstream genes such as TALLA1.
TAL1在T细胞急性淋巴细胞白血病(T-ALL)中经常被激活,它编码谱系特异性的碱性螺旋-环-螺旋(bHLH)蛋白,该蛋白在与普遍存在的碱性螺旋-环-螺旋蛋白E47或E12二聚化后能特异性结合E-box DNA基序。RBTN1和RBTN2在T-ALL中也经常被激活,它们仅编码具有串联富含半胱氨酸的LIM结构域的蛋白。我们发现,在14个T-ALL细胞系中的11个中检测到的TAL1异常表达总是伴随着RBTN1或RBTN2的异常表达。在一个TAL1/RBTN阴性的T-ALL细胞系HPB-ALL中,TAL1与RBTN1或RBTN2共同强制表达,但单独的TAL1则不会,能强烈诱导人工报告基因。然而,在非T细胞系中未观察到TAL1和RBTN的这种协同转录活性,这表明一些T细胞特异性辅因子进一步参与其中。在此背景下,我们对T细胞特异性GATA结合蛋白GATA3在TAL1和RBTN转录活性中的潜在作用进行了初步评估。我们还表明,在HPB-ALL中TAL1和RBTN1的共表达强烈诱导了TALLA1,TALLA1是一种高度特异性的T-ALL标志物,在各种T-ALL细胞系中其阳性与TAL1的异位表达100%相关。总的来说,异位的TAL1和RBTN1或-2,连同一些内源性T细胞特异性辅因子如GATA3,构成了一组高度协同的转录因子,它们在T细胞中的异常活性可能通过调节下游基因如TALLA1的表达而导致白血病发生。