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造血螺旋-环-螺旋转录因子TAL1与DNA结合的序列决定因素:E盒核心侧翼序列的重要性。

Sequence determinants of DNA binding by the hematopoietic helix-loop-helix transcription factor TAL1: importance of sequences flanking the E-box core.

作者信息

Gould K A, Bresnick E H

机构信息

University of Wisconsin Medical School, Department of Pharmacology, Madison 53706, USA.

出版信息

Gene Expr. 1998;7(2):87-101.

Abstract

TAL1 is a helix-loop-helix transcription factor that is essential for hematopoiesis. In vitro DNA binding site selection experiments have previously identified the preferred binding site for TAL1 heterodimers as AACAGATGGT. TAL1 homodimers do not bind DNA with significant affinity. A subset of other E-box sequences is also bound by TAL1 heterodimers. Here, we present an analysis of TAL1 heterodimer DNA binding specificity, using E-boxes derived from genomic clones, which were isolated by immunoadsorption of K562 erythroleukemia cell chromatin with a TAL1 antibody. We show that TAL1 heterodimer binding to a CAGATG E-box is strongly modulated by nucleotides flanking the E-box. A 10 base pair element consisting of the CAGATG E-box and two flanking nucleotides in both the 5' and 3' direction is sufficient for high-affinity binding. Certain mutations of nucleotides in either the 5' (-1 and -2) or 3' (+1 and +2) direction strongly inhibit binding. The importance of flanking nucleotides also exists in the context of nonpreferred E-boxes recognized by TAL1 heterodimers. Although there are no known target genes for TAL1, the regulatory regions of several genes involved in hematopoiesis contain the preferred E-box CAGATG. However, based on our results, the E-boxes in these potential target genes contain flanking sequences that would be expected to significantly reduce TAL1 heterodimer binding in vitro. Thus, additional stabilizing forces, such as protein-protein interactions between TAL1 heterodimers and accessory factors, may be required to confer high-affinity TAL1 heterodimer binding to such sequences.

摘要

TAL1是一种对造血作用至关重要的螺旋-环-螺旋转录因子。先前的体外DNA结合位点选择实验已确定TAL1异二聚体的首选结合位点为AACAGATGGT。TAL1同二聚体不以显著亲和力结合DNA。其他E盒序列的一个子集也被TAL1异二聚体结合。在这里,我们使用从基因组克隆中获得的E盒对TAL1异二聚体的DNA结合特异性进行了分析,这些基因组克隆是通过用TAL1抗体免疫吸附K562红白血病细胞染色质分离得到的。我们表明,TAL1异二聚体与CAGATG E盒的结合受到E盒侧翼核苷酸的强烈调节。由CAGATG E盒以及5'和3'方向上的两个侧翼核苷酸组成的10个碱基对元件足以实现高亲和力结合。5'(-1和-2)或3'(+1和+2)方向上核苷酸的某些突变会强烈抑制结合。侧翼核苷酸的重要性在TAL1异二聚体识别的非首选E盒的背景下也存在。尽管目前尚无已知的TAL1靶基因,但一些参与造血作用的基因的调控区域含有首选的E盒CAGATG。然而,根据我们的结果,这些潜在靶基因中的E盒含有侧翼序列,预计这些侧翼序列会在体外显著降低TAL1异二聚体的结合。因此,可能需要额外的稳定力量,例如TAL1异二聚体与辅助因子之间的蛋白质-蛋白质相互作用,才能使TAL1异二聚体与这些序列实现高亲和力结合。

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