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大鼠细胞色素P450C24(CYP24A1)以及F249在底物结合和催化活性中的作用。

Rat cytochrome P450C24 (CYP24A1) and the role of F249 in substrate binding and catalytic activity.

作者信息

Annalora Andrew, Bobrovnikova-Marjon Ekaterina, Serda Rita, Lansing Letitia, Chiu Mark L, Pastuszyn Andrzej, Iyer Srinivas, Marcus Craig B, Omdahl John L

机构信息

Department of Biochemistry and Molecular Biology, University of New Mexico School of Medicine, Albuquerque, NM 87131-5221, USA.

出版信息

Arch Biochem Biophys. 2004 May 15;425(2):133-46. doi: 10.1016/j.abb.2004.01.025.

Abstract

A high level of functional recombinant rat cytochrome P450C24 enzyme (CYP24A1) was obtained (40-50mg/L) using an Escherichia coli expression system. Purified enzyme was stable with retention of spectral and catalytic activity. The rate of 1,25-dihydroxyvitamin D(3) [1,25(OH)(2)D(3)] side-chain oxidation and cleavage to the end-product calcitroic acid was directly related to the rate of electron transfer from the ferredoxin redox partner. It was determined from substrate-induced spectral shifts that the 1 alpha- and 25-hydroxyl groups on vitamin D(3) metabolites and analogs were the major determinants for high-affinity binding to CYP24A1. Lowest K(d) values were obtained for 1 alpha-vitamin D(3) (0.06 microM) and 1,25-dihydroxyvitamin D(3) (0.05 microM) whereas unmodified parental vitamin D(3) and the non-secosteroid 25-hydroxycholesterol had lower affinities with K(d) values of 1.3 and 1.9 microM, respectively. The lowest binding affinity for natural vitamin D metabolites was observed for 24,25-dihydroxyvitamin D(3) [24,25(OH)(2)D(3)] (0.43 microM). Kinetic analyses of the two natural substrates 25-hydroxyvitamin D(3) [25(OH)D(3)] and 1,25-dihydroxyvitamin D(3) [1,25(OH)(2)D(3)] revealed similar K(m) values (0.35 and 0.38 microM, respectively), however, the turnover number was higher for 25(OH)D(3) compared to 1,25(OH)(2)D(3) (4.2 and 1 min(-1), respectively). Mutagenesis of F249 within the F-helix of CYP24A1 altered substrate binding and metabolism. Most notable, the hydrophobic to polar mutant F249T had a strong impact on lowering substrate-binding affinity and catalysis of the final C(23) oxidation sequence from 24,25,26,27-tetranor-1,23-dihydroxyvitamin D(3) to calcitroic acid. Two other hydrophobic 249 mutants (F249A and F249Y) also lowered substrate binding and expressed metabolic abnormalities that included the C(23)-oxidation defect observed with mutant F249T plus a similar defect involving an earlier pathway action for the C(24) oxidation of 1,24,25-trihydroxyvitamin D(3). Therefore, Phe-249 within the F-helix was demonstrated to have an important role in properly binding and aligning substrate in the CYP24A1 active site for C(23) and C(24) oxidation reactions.

摘要

利用大肠杆菌表达系统获得了高水平的功能性重组大鼠细胞色素P450C24酶(CYP24A1)(40 - 50mg/L)。纯化后的酶具有稳定性,保留了光谱和催化活性。1,25 - 二羟基维生素D(3) [1,25(OH)(2)D(3)]侧链氧化并裂解为终产物骨化三醇酸的速率与来自铁氧化还原蛋白氧化还原伴侣的电子转移速率直接相关。通过底物诱导的光谱位移确定,维生素D(3)代谢物和类似物上的1α - 和25 - 羟基是与CYP24A1高亲和力结合的主要决定因素。1α - 维生素D(3)(0.06μM)和1,25 - 二羟基维生素D(3)(0.05μM)的解离常数(K(d))值最低,而未修饰的母体维生素D(3)和非甾体类25 - 羟基胆固醇的亲和力较低,K(d)值分别为1.3和1.9μM。对于24,25 - 二羟基维生素D(3) [24,25(OH)(2)D(3)](0.43μM),观察到其对天然维生素D代谢物的结合亲和力最低。对两种天然底物25 - 羟基维生素D(3) [25(OH)D(3)]和1,25 - 二羟基维生素D(3) [1,25(OH)(2)D(3)]的动力学分析显示,它们的米氏常数(K(m))值相似(分别为0.35和0.38μM),然而,25(OH)D(3)的周转数高于1,25(OH)(2)D(3)(分别为4.2和1 min(-1))。CYP24A1的F - 螺旋内F249位点的诱变改变了底物结合和代谢。最显著的是,由疏水向极性突变的F249T对降低底物结合亲和力以及催化从24,25,26,27 - 四降 - 1,23 - 二羟基维生素D(3)到骨化三醇酸的最终C(23)氧化序列有强烈影响。另外两个疏水的249突变体(F249A和F249Y)也降低了底物结合,并表现出代谢异常,包括与突变体F249T观察到的C(23) - 氧化缺陷以及涉及1,24,25 - 三羟基维生素D(3) C(24)氧化早期途径作用的类似缺陷。因此,F - 螺旋内的苯丙氨酸 - 249被证明在CYP24A1活性位点中正确结合和排列底物以进行C(23)和C(24)氧化反应方面具有重要作用。

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