Walters K J, Dayie K T, Reece R J, Ptashne M, Wagner G
Committee on Higher Degrees in Biophysics, Harvard University, Cambridge, Massachusetts 02138, USA.
Nat Struct Biol. 1997 Sep;4(9):744-50. doi: 10.1038/nsb0997-744.
The solution structure and backbone dynamics of the transcriptional activator PUT3 (31-100) has been characterized using NMR spectroscopy. PUT3 (31-100) contains three distinct domains: a cysteine zinc cluster, linker, and dimerization domain. The cysteine zinc cluster of PUT3 closely resembles the solution structure of GAL4, while the dimerization domain forms a long coiled-coil similar to that observed in the crystal structures of GAL4 and PPR1. However, the residues at the N-terminal end of the coiled-coil behave very differently in each of these proteins. A comparison of the structural elements within this region provides a model for the DNA binding specificity of these proteins. Furthermore, we have characterized the dynamics of PUT3 to find that the zinc cluster and dimerization domains have very diverse dynamics in solution. The dimerization domain behaves as a large protein, while the peripheral cysteine zinc clusters have dynamic properties similar to small proteins.
已利用核磁共振波谱法对转录激活因子PUT3 (31 - 100)的溶液结构和主链动力学进行了表征。PUT3 (31 - 100)包含三个不同的结构域:一个半胱氨酸锌簇、连接区和二聚化结构域。PUT3的半胱氨酸锌簇与GAL4的溶液结构非常相似,而二聚化结构域形成了一个长的卷曲螺旋,类似于在GAL4和PPR1的晶体结构中观察到的那样。然而,卷曲螺旋N末端的残基在这些蛋白质中的行为非常不同。对该区域内结构元件的比较为这些蛋白质的DNA结合特异性提供了一个模型。此外,我们对PUT3的动力学进行了表征,发现锌簇和二聚化结构域在溶液中有非常不同的动力学。二聚化结构域表现得像一个大蛋白质,而外围的半胱氨酸锌簇具有与小蛋白质相似的动力学特性。