Wilson D, Sheng G, Lecuit T, Dostatni N, Desplan C
Howard Hughes Medical Institute, Rockefeller University, New York, New York 10021-6399.
Genes Dev. 1993 Nov;7(11):2120-34. doi: 10.1101/gad.7.11.2120.
Homeo domain-containing proteins mediate many transcriptional processes in eukaryotes. Because nearly all animal homeo proteins are believed to bind to short, highly related DNA sequences, the basis for their high specificity of action is not understood. We show that cooperative dimerization on palindromic DNA sequences can provide increased specificity to one of the three major classes of homeo domains, the Paired/Pax class. The 60-amino-acid homeo domains from this class contain sufficient information to bind cooperatively as homo- and heterodimers to palindromic DNA sequences; that is, the binding of one homeo domain molecule can increase the affinity of a second molecule by up to 300-fold. Different members of the Paired (Prd) class of homeo domains prefer different spacings between half-sites, as determined by the ninth amino acid residue of the recognition helix. In addition, this residue determines the identity of the base pairs at the center of the palindromic sites, as well as the magnitude of the cooperative interaction. The cooperative dimerization of homeo domains in the Prd class distinguishes them from other classes, whereas binding-site configuration and sequence specificity allow for distinctions within this class.
含同源结构域的蛋白质介导真核生物中的许多转录过程。由于几乎所有动物同源蛋白都被认为能与短的、高度相关的DNA序列结合,其作用高度特异性的基础尚不清楚。我们发现,在回文DNA序列上的协同二聚化作用能够为三大主要同源结构域类别之一的配对结构域(Paired/Pax)类别提供更高的特异性。该类别中含60个氨基酸的同源结构域包含足够的信息,可作为同二聚体和异二聚体与回文DNA序列进行协同结合;也就是说,一个同源结构域分子的结合可使第二个分子的亲和力提高多达300倍。配对结构域(Prd)类别的不同同源结构域成员偏好半位点之间不同的间距,这由识别螺旋的第九个氨基酸残基决定。此外,该残基还决定了回文位点中心的碱基对身份以及协同相互作用的强度。Prd类同源结构域的协同二聚化使其与其他类别区分开来,而结合位点的构型和序列特异性则使得该类别内部也存在差异。