McCoy Jason G, Bailey Lucas J, Bitto Eduard, Bingman Craig A, Aceti David J, Fox Brian G, Phillips George N
Center for Eukaryotic Structural Genomics and Department of Biochemistry, University of Wisconsin, Madison, 53706-1544, USA.
Proc Natl Acad Sci U S A. 2006 Feb 28;103(9):3084-9. doi: 10.1073/pnas.0509262103. Epub 2006 Feb 21.
Cysteine dioxygenase (CDO) catalyzes the oxidation of l-cysteine to cysteine sulfinic acid. Deficiencies in this enzyme have been linked to autoimmune diseases and neurological disorders. The x-ray crystal structure of CDO from Mus musculus was solved to a nominal resolution of 1.75 Angstroms. The sequence is 91% identical to that of a human homolog. The structure reveals that CDO adopts the typical beta-barrel fold of the cupin superfamily. The NE2 atoms of His-86, -88, and -140 provide the metal binding site. The structure further revealed a covalent linkage between the side chains of Cys-93 and Tyr-157, the cysteine of which is conserved only in eukaryotic proteins. Metal analysis showed that the recombinant enzyme contained a mixture of iron, nickel, and zinc, with increased iron content associated with increased catalytic activity. Details of the predicted active site are used to present and discuss a plausible mechanism of action for the enzyme.
半胱氨酸双加氧酶(CDO)催化L-半胱氨酸氧化为半胱氨酸亚磺酸。该酶的缺陷与自身免疫性疾病和神经紊乱有关。小家鼠CDO的X射线晶体结构解析到名义分辨率为1.75埃。其序列与人类同源物的序列有91%的同一性。该结构表明CDO采用了铜蛋白超家族典型的β-桶状折叠。His-86、-88和-140的NE2原子提供金属结合位点。该结构还揭示了Cys-93和Tyr-157侧链之间的共价连接,其中的半胱氨酸仅在真核生物蛋白质中保守。金属分析表明,重组酶含有铁、镍和锌的混合物,铁含量增加与催化活性增加相关。预测的活性位点细节用于提出和讨论该酶可能的作用机制。