Wolf-Watz M, Xie X Q, Holm M, Grundström T, Härd T
Department of Biotechnology, Royal Institute of Technology, Stockholm, Sweden.
Eur J Biochem. 1999 Apr;261(1):251-60. doi: 10.1046/j.1432-1327.1999.00269.x.
The Runt domain is responsible for specific DNA and protein-protein interactions in a family of transcription factors which includes human AML1. Structural data on the Runt domain has not yet become available, possibly due to solubility and stability problems with expressed protein fragments. Here we describe the optimization and characterization of a 140-residue fragment, containing the Runt domain of AML1, which is suitable for structural studies. The fragment of AML1 including amino acids 46-185 [AML1 Dm(46-185)] contains a double cysteine-->serine mutation which does not affect Runt domain structure or DNA-binding affinity. Purified AML1 Dm(46-185) is soluble and optimally stable in a buffer containing 200 mm MgSO4 and 20 mm sodium phosphate at pH 6.0. Nuclear magnetic resonance and circular dichroism spectroscopy indicate that the Runt domain contains beta-sheet, but little or no alpha-helical secondary structure elements. The 45 N-terminal residues of AML1 are unstructured and removal of the N-terminal enhances sequence-specific DNA binding. The NMR spectrum of AML1 Dm(46-185) displays a favorable chemical shift dispersion and resolved NOE connectivities are readily identified, suggesting that a structure determination of this Runt domain fragment is feasible. A titration of 15N-labelled AML1 Dm(46-185) with a 14-bp cognate DNA duplex results in changes in the 15N NMR heteronuclear single quantum coherence spectrum which indicate the formation of a specific complex and structural changes in the Runt domain upon DNA binding.
Runt结构域负责一类转录因子中的特定DNA和蛋白质-蛋白质相互作用,该转录因子家族包括人类AML1。关于Runt结构域的结构数据尚未可得,这可能是由于表达的蛋白质片段存在溶解性和稳定性问题。在此,我们描述了一个包含AML1的Runt结构域的140个残基片段的优化和特性,该片段适用于结构研究。包含氨基酸46 - 185的AML1片段[AML1 Dm(46 - 185)]含有一个双半胱氨酸到丝氨酸的突变,该突变不影响Runt结构域的结构或DNA结合亲和力。纯化的AML1 Dm(46 - 185)在含有200 mM MgSO4和20 mM磷酸钠、pH值为6.0的缓冲液中可溶且具有最佳稳定性。核磁共振和圆二色光谱表明,Runt结构域包含β-折叠,但几乎没有或没有α-螺旋二级结构元件。AML1的45个N端残基是无结构的,去除N端可增强序列特异性DNA结合。AML1 Dm(46 - 185)的核磁共振谱显示出良好的化学位移分散,并且很容易识别出解析的核Overhauser效应(NOE)连接性,这表明确定该Runt结构域片段的结构是可行的。用一个14碱基对的同源DNA双链体滴定15N标记的AML1 Dm(46 - 185)会导致15N核磁共振异核单量子相干谱发生变化,这表明形成了特定的复合物,并且Runt结构域在DNA结合时发生了结构变化。