Prosser David E, Kaufmann Martin, O'Leary Brendan, Byford Valarie, Jones Glenville
Department of Biochemistry, Queen's University, Kingston, Ontario, Canada.
Proc Natl Acad Sci U S A. 2007 Jul 31;104(31):12673-8. doi: 10.1073/pnas.0702093104. Epub 2007 Jul 23.
Studies of 25-hydroxyvitamin D(3)-24-hydroxylase (CYP24A1) have demonstrated that it is a bifunctional enzyme capable of the 24-hydroxylation of 1alpha,25-(OH)(2)D(3), leading to the excretory form, calcitroic acid, and 23-hydroxylation, culminating in 1alpha,25-(OH)(2)D(3)-26,23-lactone. The degree to which CYP24A1 performs either 23- or 24-hydroxylation is species-dependent. In this paper, we show that the human enzyme that predominantly 24-hydroxylates its substrate differs from the opossum enzyme that 23-hydroxylates it at only a limited number of amino acid residues. Mutagenesis of the human form at a single substrate-binding residue (A326G) dramatically changes the regioselectivity of the enzyme from a 24-hydroxylase to a 23-hydroxylase, whereas other modifications have no effect. Ala-326 is located in the I-helix, close to the terminus of the docked 25-hydroxylated side chain in a CYP24A1 homology model, a result that we interpret indicates that substitution of a glycine at 326 provides extra space for the side chain of the substrate to move deeper into the pocket and place it in a optimal stereochemical position for 23-hydroxylation. We discuss the physiological ramifications of these results for species possessing the A326G substitution, as well as implications for optimal vitamin D analog design.
对25-羟基维生素D(3)-24-羟化酶(CYP24A1)的研究表明,它是一种双功能酶,能够对1α,25-(OH)(2)D(3)进行24-羟化,生成排泄形式的钙三醇酸,还能进行23-羟化,最终生成1α,25-(OH)(2)D(3)-26,23-内酯。CYP24A1进行23-或24-羟化的程度因物种而异。在本文中,我们表明主要对其底物进行24-羟化的人源酶与仅在有限数量氨基酸残基处进行23-羟化的负鼠酶不同。人源酶在单个底物结合残基(A326G)处的诱变显著改变了酶的区域选择性,从24-羟化酶变为23-羟化酶,而其他修饰则没有效果。丙氨酸-326位于I-螺旋中,在CYP24A1同源模型中靠近对接的25-羟化侧链的末端,我们认为这一结果表明在326位取代甘氨酸为底物侧链提供了额外空间,使其能够更深地进入口袋并处于23-羟化的最佳立体化学位置。我们讨论了这些结果对具有A326G取代的物种的生理影响,以及对优化维生素D类似物设计的意义。