Suppr超能文献

酸性尾巴对HMG1、2类蛋白质DNA结合特性的影响:来自尾巴切换和尾巴去除的见解。

The effect of the acidic tail on the DNA-binding properties of the HMG1,2 class of proteins: insights from tail switching and tail removal.

作者信息

Lee K B, Thomas J O

机构信息

Cambridge Centre for Molecular Recognition and Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, CB2 1GA, UK.

出版信息

J Mol Biol. 2000 Nov 24;304(2):135-49. doi: 10.1006/jmbi.2000.4206.

Abstract

The high-mobility group (HMG) proteins HMG1, HMG2 and HMG2a are relatively abundant vertebrate DNA-binding and bending proteins that bind with structure specificity, rather than sequence specificity, and appear to play an architectural role in the assembly of nucleoprotein complexes. They have two homologous "HMG-box" DNA-binding domains (which show about 80 % homology) connected by a short basic linker to an acidic carboxy-terminal tail that differs in length between HMG1 and 2. To gain insights into the role of the acidic tail, we examined the DNA-binding properties of HMG1, HMG2b and HMG2a from chicken erythrocytes (corresponding to HMG1, HMG2 and HMG2a in other vertebrates). HMG1, with the longest acidic tail, is less effective than HMG2a and 2b (at a given molar input ratio) in supercoiling relaxed, closed circular DNA, in inducing ligase-mediated circularisation of an 88 bp DNA fragment, and in binding to four-way DNA junctions in a gel-shift assay. Removal of the acidic tail increases the affinity of the HMG boxes for DNA and largely abolishes the differences between the three species. Switching the acidic tail of HMG1 for that of HMG2a or 2b gives hybrid proteins with essentially the same DNA-binding properties as HMG2a, 2b. The length (and possibly sequence) of the acidic tail thus appears to be the dominant factor in mediating the differences in properties between HMG1, 2a and 2b and finely tunes the rather similar DNA-binding properties of the tandem HMG boxes, presumably to fulfill different cellular roles. The tail is essential for structure-selective DNA-binding of the HMG boxes to DNA minicircles in the presence of equimolar linear DNA, and has little effect on the affinity for this already highly distorted DNA ligand, in contrast to binding to linear and four-way junction DNA.

摘要

高迁移率族(HMG)蛋白HMG1、HMG2和HMG2a是相对丰富的脊椎动物DNA结合和弯曲蛋白,它们以结构特异性而非序列特异性结合,并且似乎在核蛋白复合物的组装中发挥结构作用。它们有两个同源的“HMG框”DNA结合结构域(同源性约为80%),通过一个短的碱性连接子连接到一个酸性羧基末端尾巴,HMG1和HMG2的酸性羧基末端尾巴长度不同。为了深入了解酸性尾巴的作用,我们研究了来自鸡红细胞的HMG1、HMG2b和HMG2a(相当于其他脊椎动物中的HMG1、HMG2和HMG2a)的DNA结合特性。在超螺旋松弛的闭环DNA中、在诱导88 bp DNA片段的连接酶介导的环化过程中以及在凝胶迁移试验中与四向DNA接头结合时,酸性尾巴最长的HMG1(在给定的摩尔输入比下)比HMG2a和HMG2b的效果要差。去除酸性尾巴会增加HMG框与DNA的亲和力,并在很大程度上消除这三种蛋白之间的差异。将HMG1的酸性尾巴换成HMG2a或HMG2b对应的尾巴,得到的杂合蛋白具有与HMG2a、HMG2b基本相同的DNA结合特性。因此,酸性尾巴的长度(可能还有序列)似乎是介导HMG1、HMG2a和HMG2b之间特性差异的主要因素,并精细调节串联HMG框相当相似的DNA结合特性,大概是为了实现不同的细胞功能。在等摩尔线性DNA存在的情况下,尾巴对于HMG框与DNA小环的结构选择性DNA结合至关重要,与结合线性和四向接头DNA相比,对这种已经高度扭曲的DNA配体的亲和力影响很小。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验