Steiner Roberto A, Kooter Ingeborg M, Dijkstra Bauke W
Laboratory of Biophysical Chemistry, Department of Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
Biochemistry. 2002 Jun 25;41(25):7955-62. doi: 10.1021/bi0159736.
The crystal structures of the copper-dependent Aspergillus japonicus quercetin 2,3-dioxygenase (2,3QD) complexed with the inhibitors diethyldithiocarbamate (DDC) and kojic acid (KOJ) are reported at 1.70 and 2.15 A resolution, respectively. Both inhibitors asymmetrically chelate the metal center and assume a common orientation in the active site cleft. Their molecular plane blocks access to the inner portion of the cavity which is lined by the side chains of residues Met51, Thr53, Phe75, Phe114, and Met123 and which is believed to bind the flavonol B-ring of the natural substrate. The binding of the inhibitors brings order into the mixed coordination observed in the native enzyme. DDC and KOJ induce a single conformation of the Glu73 side chain, although in different ways. In the presence of DDC, Glu73 is detached from the copper ion with its carboxylate moiety pointing away from the active site cavity. In contrast, when KOJ is bound, Glu73 ligates the Cu ion through its O(epsilon)(1) atom with a monodentate geometry. Compared to the native coordinating conformation, this conformation is approximately 90 degrees rotated about the chi(3) angle. This latter Glu73 conformation is compatible with the presence of a bound substrate.
分别以1.70 Å和2.15 Å的分辨率报道了与抑制剂二乙基二硫代氨基甲酸盐(DDC)和曲酸(KOJ)复合的铜依赖性日本曲霉槲皮素2,3-双加氧酶(2,3QD)的晶体结构。两种抑制剂均以不对称方式螯合金属中心,并在活性位点裂隙中呈现共同的取向。它们的分子平面阻碍了进入由残基Met51、Thr53、Phe75、Phe114和Met123的侧链排列的腔内部,据信该腔结合天然底物的黄酮醇B环。抑制剂的结合使天然酶中观察到的混合配位变得有序。DDC和KOJ以不同方式诱导Glu73侧链形成单一构象。在DDC存在下,Glu73从铜离子上脱离,其羧基部分指向远离活性位点腔的方向。相反,当KOJ结合时,Glu73通过其O(ε)(1)原子以单齿几何构型与铜离子配位。与天然配位构象相比,该构象绕χ(3)角旋转约90度。后一种Glu73构象与结合底物的存在相容。