Teo S H, Grasser K D, Thomas J O
Cambridge Centre for Molecular Recognition, Department of Biochemistry, University of Cambridge, England.
Eur J Biochem. 1995 Jun 15;230(3):943-50. doi: 10.1111/j.1432-1033.1995.tb20640.x.
High-mobility-group protein 1 (HMG1) is an abundant, non-sequence-specific, chromosomal protein with two homologous, HMG-box, DNA-binding domains, A and B, and an acidic tail. The HMG-box motif also occurs, as a single copy, in some sequence-specific transcription factors, e.g. the sex-determining factor, SRY. We have investigated whether or not there are differences in the DNA-binding properties of the isolated A and B HMG-box domains of HMG1 and SRY and whether, in the case of A and B, there might also be differences due to different sequence contexts within the native protein. The basic regions that flank the HMG1 B box, giving B', enhance its DNA-binding, supercoiling and DNA-bending activities, and promote the self-association of the DNA-bound B-box. All the HMG-box domains bind with structure specificity to four-way junctions, but the structure selectivity is significantly greater for A and the SRY box than for the HMG1 B or B' domains, as judged by competition with excess plasmid DNA. The domains self-associate to different extents on supercoiled DNA and this may explain differences in the ability to discriminate between four-way junctions and supercoiled DNA. The HMG1 A, B and B' domains constrain negative superhelical turns in DNA, but the SRY HMG box does not. Only the full B domain (B') bends DNA in a ligase-mediated circularisation assay; the minimal B box, the A domain and the SRY box do not. Thus, despite a common global fold, the HMG box appears to have been adapted to various functions in different protein contexts.
高迁移率族蛋白1(HMG1)是一种丰富的、非序列特异性的染色体蛋白,具有两个同源的HMG盒DNA结合结构域A和B以及一个酸性尾巴。HMG盒基序也以单拷贝形式存在于一些序列特异性转录因子中,例如性别决定因子SRY。我们研究了HMG1和SRY分离的A和B HMG盒结构域在DNA结合特性上是否存在差异,以及在A和B的情况下,由于天然蛋白中不同的序列背景是否也可能存在差异。位于HMG1 B盒两侧的碱性区域形成B',增强其DNA结合、超螺旋和DNA弯曲活性,并促进与DNA结合的B盒的自缔合。所有的HMG盒结构域都以结构特异性结合四向连接点,但通过与过量质粒DNA竞争判断,A和SRY盒的结构选择性明显大于HMG1 B或B'结构域。这些结构域在超螺旋DNA上自缔合程度不同,这可能解释了区分四向连接点和超螺旋DNA能力的差异。HMG1 A、B和B'结构域限制DNA中的负超螺旋圈数,但SRY HMG盒不限制。在连接酶介导的环化试验中,只有完整的B结构域(B')能使DNA弯曲;最小的B盒、A结构域和SRY盒则不能。因此,尽管具有共同的整体折叠,但HMG盒似乎已在不同的蛋白质背景中适应了各种功能。