Weiler S, Gruschus J M, Tsao D H, Yu L, Wang L H, Nirenberg M, Ferretti J A
Laboratory of Biophysical Chemistry, NHLBI, National Institutes of Health, Bethesda, Maryland 20892-0380, USA.
J Biol Chem. 1998 May 1;273(18):10994-1000. doi: 10.1074/jbc.273.18.10994.
Secondary structures, DNA binding properties, and thermal denaturation behavior of six site-directed mutant homeodomains encoded by the vnd/NK-2 gene from Drosophila melanogaster are described. Three single site H52R, Y54M, and T56W mutations, two double site H52R/T56W and Y54M/T56W mutations, and one triple site H52R/Y54M/T56W mutation were investigated. These positions were chosen based on their variability across homeodomains displaying differences in secondary structure and DNA binding specificity. Multidimensional NMR, electrophoretic mobility shift assays, and circular dichroism spectropolarimetry studies were carried out on recombinant 80-amino acid residue proteins containing the homeodomain. Position 56, but more importantly position 56 in combination with position 52, plays an important role in determining the length of the recognition helix. The H52R mutation alone does not affect the length of this helix but does increase the thermal stability. Introduction of site mutations at positions 52 and 56 in vnd/NK-2 does not modify their high affinity binding to the 18-base pair DNA fragment containing the vnd/NK-2 consensus binding sequence, CAAGTG. Site mutations involving position 54 (Y54M, Y54M/T56W, and H52R/Y54M/T56W) all show a decrease of 1 order of magnitude in their binding affinity. The roles in structure and sequence specificity of individual atom-atom interactions are described.
本文描述了果蝇vnd/NK-2基因编码的六个位点定向突变同源结构域的二级结构、DNA结合特性和热变性行为。研究了三个单点突变H52R、Y54M和T56W,两个双点突变H52R/T56W和Y54M/T56W,以及一个三点突变H52R/Y54M/T56W。选择这些位置是基于它们在同源结构域中的变异性,这些同源结构域在二级结构和DNA结合特异性上存在差异。对含有同源结构域的重组80个氨基酸残基的蛋白质进行了多维核磁共振、电泳迁移率变动分析和圆二色光谱偏振测定研究。56位,更重要的是56位与52位结合,在确定识别螺旋的长度中起重要作用。单独的H52R突变不影响该螺旋的长度,但确实增加了热稳定性。在vnd/NK-2的52位和56位引入位点突变不会改变它们与含有vnd/NK-2共有结合序列CAAGTG的18个碱基对DNA片段的高亲和力结合。涉及54位的位点突变(Y54M、Y54M/T56W和H52R/Y54M/T56W)在结合亲和力上均下降了1个数量级。描述了单个原子-原子相互作用在结构和序列特异性中的作用。