Elnitski L, Miller W, Hardison R
Department of Biochemistry, The Pennsylvania State University, University Park 16802, USA.
J Biol Chem. 1997 Jan 3;272(1):369-78. doi: 10.1074/jbc.272.1.369.
The human beta-globin gene cluster is regulated in part by a distal locus control region that is required for opening a chromatin domain in erythroid cells and enhancing expression of the beta-like globin genes at the correct developmental stages. One part of the locus control region, called hypersensitive site 2 (HS2), functions as a strong enhancer. Matches to the consensus binding sites for basic helix-loop-helix (bHLH) proteins (E boxes) are well conserved within the HS2 core. We show that mutations of the HS2 core that alter an invariant E box cause a 3.5-fold reduction in enhancement of expression of an epsilon-globin reporter gene in transiently transfected K562 cells, both before and after induction. Mutations of the HS2 core that alter a less-highly conserved E box cause a more modest reduction in enhancement. Footprint analysis shows binding of erythroid nuclear proteins in vitro to the invariant E box as well as an adjacent CAC/GTG box. Probes containing the E box regions form sequence-specific complexes with proteins from both K562 and MEL nuclear extracts; these are disrupted by the same mutations that decrease enhancement. Some of these latter complexes contain known bHLH proteins, as revealed by specific loss of individual complexes when treated with antibodies against TAL1 and USF. Interaction between the E boxes and the bHLH proteins, as well as other binding proteins, could account for the role of these sites in enhancement by HS2.
人类β-珠蛋白基因簇部分受一个远端基因座控制区调控,该区域对于在红细胞中打开染色质结构域以及在正确的发育阶段增强类β珠蛋白基因的表达是必需的。基因座控制区的一部分,称为超敏位点2(HS2),起着强增强子的作用。与碱性螺旋-环-螺旋(bHLH)蛋白(E盒)的共有结合位点的匹配在HS2核心区域内高度保守。我们发现,改变一个不变E盒的HS2核心区域突变会导致在诱导前后瞬时转染的K562细胞中ε-珠蛋白报告基因表达增强降低3.5倍。改变一个保守性较低的E盒的HS2核心区域突变导致增强作用的降低幅度较小。足迹分析显示红细胞核蛋白在体外与不变E盒以及相邻的CAC/GTG盒结合。含有E盒区域的探针与来自K562和MEL核提取物的蛋白质形成序列特异性复合物;这些复合物会被降低增强作用的相同突变所破坏。当用针对TAL1和USF的抗体处理时,一些后一种复合物中含有已知的bHLH蛋白,这可通过单个复合物的特异性缺失得以揭示。E盒与bHLH蛋白以及其他结合蛋白之间的相互作用可能解释了这些位点在HS2增强作用中的作用。