Churchill M E, Jones D N, Glaser T, Hefner H, Searles M A, Travers A A
Department of Cell and Structural Biology, University of Illinois, Urbana 61801, USA.
EMBO J. 1995 Mar 15;14(6):1264-75. doi: 10.1002/j.1460-2075.1995.tb07110.x.
The high mobility group (HMG) protein HMG-D from Drosophila melanogaster is a highly abundant chromosomal protein that is closely related to the vertebrate HMG domain proteins HMG1 and HMG2. In general, chromosomal HMG domain proteins lack sequence specificity. However, using both NMR spectroscopy and standard biochemical techniques we show that binding of HMG-D to a single DNA site is sequence selective. The preferred duplex DNA binding site comprises at least 5 bp and contains the deformable dinucleotide TG embedded in A/T-rich sequences. The TG motif constitutes a common core element in the binding sites of the well-characterized sequence-specific HMG domain proteins. We show that a conserved aromatic residue in helix 1 of the HMG domain may be involved in recognition of this core sequence. In common with other HMG domain proteins HMG-D binds preferentially to DNA sites that are stably bent and underwound, therefore HMG-D can be considered an architecture-specific protein. Finally, we show that HMG-D bends DNA and may confer a superhelical DNA conformation at a natural DNA binding site in the Drosophila fushi tarazu scaffold-associated region.
来自黑腹果蝇的高迁移率族(HMG)蛋白HMG-D是一种高度丰富的染色体蛋白,与脊椎动物的HMG结构域蛋白HMG1和HMG2密切相关。一般来说,染色体HMG结构域蛋白缺乏序列特异性。然而,我们通过核磁共振光谱法和标准生化技术表明,HMG-D与单个DNA位点的结合具有序列选择性。其偏好的双链DNA结合位点至少包含5个碱基对,并且含有嵌入富含A/T序列中的可变形二核苷酸TG。TG基序构成了特征明确的序列特异性HMG结构域蛋白结合位点中的一个共同核心元件。我们表明,HMG结构域螺旋1中的一个保守芳香族残基可能参与对该核心序列的识别。与其他HMG结构域蛋白一样,HMG-D优先结合稳定弯曲和负超螺旋的DNA位点,因此HMG-D可被视为一种结构特异性蛋白。最后,我们表明HMG-D能使DNA弯曲,并可能在果蝇分节基因ftz支架相关区域的天然DNA结合位点赋予超螺旋DNA构象。