Stros M, Stokrová J, Thomas J O
Institute of Biophysics, Czech Academy of Sciences, Brno.
Nucleic Acids Res. 1994 Mar 25;22(6):1044-51. doi: 10.1093/nar/22.6.1044.
We have compared HMG1 with the product of tryptic removal of its acidic C-terminal domain termed HMG3, which contains two 'HMG-box' DNA-binding domains. (i) HMG3 has a higher affinity for DNA than HMG1. (ii) Both HMG1 and HMG3 supercoil circular DNA in the presence of topoisomerase I. Supercoiling by HMG3 is the same at approximately 50 mM and approximately 150 mM ionic strength, as is its affinity for DNA, whereas supercoiling by HMG1 is less at 150 mM than at 50 mM ionic strength although its affinity for DNA is unchanged, showing that the acidic C-terminal tail represses supercoiling at the higher ionic strength. (iii) Electron microscopy shows that HMG3 at a low protein:DNA input ratio (1:1 w/w; r = 1), and HMG1 at a 6-fold higher ratio, cause looping of relaxed circular DNA at 150 mM ionic strength. Oligomeric protein 'beads' are apparent at the bases of the loops and at cross-overs of DNA duplexes. (iv) HMG3 at high input ratios (r = 6), but not HMG1, causes DNA compaction without distortion of the B-form. The two HMG-box domains of HMG1 are thus capable of manipulating DNA by looping, compaction and changes in topology. The acidic C-tail down-regulates these effects by modulation of the DNA-binding properties.
我们将HMG1与通过胰蛋白酶去除其酸性C末端结构域后得到的产物HMG3进行了比较,HMG3含有两个“HMG盒”DNA结合结构域。(i)HMG3对DNA的亲和力高于HMG1。(ii)在拓扑异构酶I存在的情况下,HMG1和HMG3都能使环状DNA超螺旋化。HMG3在大约50 mM和大约150 mM离子强度下的超螺旋化程度相同,其对DNA的亲和力也是如此,而HMG1在150 mM离子强度下的超螺旋化程度低于50 mM时,尽管其对DNA的亲和力不变,这表明酸性C末端尾巴在较高离子强度下抑制超螺旋化。(iii)电子显微镜显示,在150 mM离子强度下,低蛋白质:DNA输入比(1:1 w/w;r = 1)的HMG3和高6倍比例的HMG1会导致松弛环状DNA形成环。在环的基部和DNA双链的交叉处可以看到寡聚蛋白“珠子”。(iv)高输入比(r = 6)的HMG3会导致DNA压缩而不扭曲B型结构,而HMG1则不会。因此,HMG1的两个HMG盒结构域能够通过环化、压缩和拓扑变化来操纵DNA。酸性C末端尾巴通过调节DNA结合特性来下调这些效应。