Guan Y, Manuel R C, Arvai A S, Parikh S S, Mol C D, Miller J H, Lloyd S, Tainer J A
Department of Molecular Biology, Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
Nat Struct Biol. 1998 Dec;5(12):1058-64. doi: 10.1038/4168.
The DNA glycosylase MutY, which is a member of the Helix-hairpin-Helix (HhH) DNA glycosylase superfamily, excises adenine from mispairs with 8-oxoguanine and guanine. High-resolution crystal structures of the MutY catalytic core (cMutY), the complex with bound adenine, and designed mutants reveal the basis for adenine specificity and glycosyl bond cleavage chemistry. The two cMutY helical domains form a positively-charged groove with the adenine-specific pocket at their interface. The Watson-Crick hydrogen bond partners of the bound adenine are substituted by protein atoms, confirming a nucleotide flipping mechanism, and supporting a specific DNA binding orientation by MutY and structurally related DNA glycosylases.
DNA糖基化酶MutY是螺旋-发夹-螺旋(HhH)DNA糖基化酶超家族的成员之一,它能从与8-氧代鸟嘌呤和鸟嘌呤形成的错配中切除腺嘌呤。MutY催化核心(cMutY)、与结合腺嘌呤形成的复合物以及设计的突变体的高分辨率晶体结构揭示了腺嘌呤特异性和糖基键裂解化学的基础。两个cMutY螺旋结构域在它们的界面处形成一个带正电荷的凹槽,其中有腺嘌呤特异性口袋。结合的腺嘌呤的沃森-克里克氢键配对被蛋白质原子取代,证实了核苷酸翻转机制,并支持MutY和结构相关的DNA糖基化酶的特定DNA结合方向。