Suck D, Oefner C
Nature. 1986;321(6070):620-5. doi: 10.1038/321620a0.
Bovine pancreatic deoxyribonuclease I (DNase I), an endonuclease that degrades double-stranded DNA in a nonspecific but sequence-dependent manner, has been used as a biochemical tool in various reactions, in particular as a probe for the structure of chromatin and for the helical periodicity of DNA on the nucleosome and in solution. Limited digestion by DNase I, termed DNase I 'footprinting', is routinely used to detect protected regions in DNA-protein complexes. Recently, we have solved the three-dimensional structure of this glycoprotein (relative molecular mass 30,400) by X-ray structure analysis at 2.5 A resolution and have subsequently refined it crystallographically at 2.0 A. Based on the refined structure and the binding of Ca2+-thymidine 3',5'-diphosphate (Ca-pTp) at the active site, we propose a mechanism of action and present a model for the interaction of DNase I with double-stranded DNA that involves the binding of an exposed loop region in the minor groove of B-DNA and electrostatic interactions of phosphates from both strands with arginine and lysine residues on either side of this loop. We explain DNase I cleavage patterns in terms of this model and discuss the consequences of the extended DNase I-DNA contact region for the interpretation of DNase I footprinting results.
牛胰脱氧核糖核酸酶I(DNase I)是一种核酸内切酶,能以非特异性但依赖序列的方式降解双链DNA,已在各种反应中用作生化工具,尤其是作为染色质结构以及核小体上和溶液中DNA螺旋周期性的探针。用DNase I进行有限消化,即所谓的DNase I“足迹法”,通常用于检测DNA-蛋白质复合物中的受保护区域。最近,我们通过X射线结构分析以2.5埃的分辨率解析了这种糖蛋白(相对分子质量为30400)的三维结构,随后又以2.0埃的分辨率对其进行了晶体学精修。基于精修后的结构以及活性位点处Ca2+-胸苷3',5'-二磷酸(Ca-pTp)的结合,我们提出了一种作用机制,并给出了DNase I与双链DNA相互作用的模型,该模型涉及B-DNA小沟中一个暴露环区的结合以及两条链上的磷酸基团与该环两侧精氨酸和赖氨酸残基的静电相互作用。我们根据该模型解释了DNase I的切割模式,并讨论了扩展的DNase I-DNA接触区域对DNase I足迹法结果解释的影响。