Glatigny A, Hof P, Romão M J, Huber R, Scazzocchio C
Institut de Génétique et Microbiologie, URA 1354, Université Paris-Sud, 91405, France.
J Mol Biol. 1998 May 1;278(2):431-8. doi: 10.1006/jmbi.1998.1707.
We describe the sequence changes of a number of mutations of the Aspergillus nidulans xanthine dehydrogenase (XDH). We have located the amino acids affected by these changes in the three-dimensional (3D) structure of aldehyde oxido-reductase (MOP) from Desulfovibrio gigas, related to eukaryotic XDHs. Of these, two are loss of function mutations, mapping, respectively, in the molybdenum-pterin co-factor (MoCo) domain and in the domain involved in substrate recognition. Changes in two amino acids result in resistance to the irreversible inhibitor allopurinol. In Arg911 two different changes, conserved among all XDHs and MOP but not in other aldehyde oxidases (AO), change the position of hydroxylation of the analogue 2-hydroxypurine from C-8 to C-6. A number of changes affect residues adjacent to the molybdenum or its ligands. Arg911 is positioned in the substrate pocket in a way that it can account for the positioning of purine substrates in relation to the MoCo reactive center, together with a glutamate residue, universally conserved among the XDHs (Glu833).
我们描述了构巢曲霉黄嘌呤脱氢酶(XDH)多个突变的序列变化。我们已在巨大脱硫弧菌的醛氧化还原酶(MOP)的三维(3D)结构中定位了受这些变化影响的氨基酸,该结构与真核XDH相关。其中,两个是功能丧失突变,分别定位于钼蝶呤辅因子(MoCo)结构域和参与底物识别的结构域。两个氨基酸的变化导致对不可逆抑制剂别嘌呤醇产生抗性。在Arg911中,两种不同的变化在所有XDH和MOP中保守,但在其他醛氧化酶(AO)中不保守,将类似物2-羟基嘌呤的羟基化位置从C-8变为C-6。一些变化影响与钼或其配体相邻的残基。Arg911位于底物口袋中,与XDH中普遍保守的谷氨酸残基(Glu833)一起,可以解释嘌呤底物相对于MoCo反应中心的定位。