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与维生素D3结合的CYP2R1的结构分析。

Structural analysis of CYP2R1 in complex with vitamin D3.

作者信息

Strushkevich Natallia, Usanov Sergey A, Plotnikov Alexander N, Jones Glenville, Park Hee-Won

机构信息

Structural Genomics Consortium, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Mol Biol. 2008 Jun 27;380(1):95-106. doi: 10.1016/j.jmb.2008.03.065. Epub 2008 Apr 8.

Abstract

The activation of vitamin D to its hormonal form is mediated by cytochrome P450 enzymes. CYP2R1 catalyzes the initial step converting vitamin D into 25-hydroxyvitamin D. A CYP2R1 gene mutation causes an inherited form of rickets due to 25-hydroxylase deficiency. To understand the narrow substrate specificity of CYP2R1 we obtained the hemeprotein in a highly purified state, confirmed the enzyme as a vitamin D 25-hydroxylase, and solved the crystal structure of CYP2R1 in complex with vitamin D3. The CYP2R1 structure adopts a closed conformation with the substrate access channel being covered by the ordered B'-helix and slightly opened to the surface, which defines the substrate entrance point. The active site is lined by conserved, mostly hydrophobic residues. Vitamin D3 is bound in an elongated conformation with the aliphatic side-chain pointing toward the heme. The structure reveals the secosteroid binding mode in an extended active site and allows rationalization of the molecular basis of the inherited rickets associated with CYP2R1.

摘要

维生素D转化为其激素形式的过程由细胞色素P450酶介导。CYP2R1催化将维生素D转化为25-羟基维生素D的第一步反应。由于25-羟化酶缺乏,CYP2R1基因突变会导致一种遗传性佝偻病。为了了解CYP2R1狭窄的底物特异性,我们获得了高度纯化状态的血红素蛋白,确认该酶为维生素D 25-羟化酶,并解析了CYP2R1与维生素D3复合物的晶体结构。CYP2R1结构呈封闭构象,底物进入通道被有序的B'-螺旋覆盖,并略微向表面开放,这确定了底物进入点。活性位点由保守的、大多为疏水的残基构成。维生素D3以拉长的构象结合,脂肪族侧链指向血红素。该结构揭示了在扩展活性位点中的甾醇类结合模式,并使与CYP2R1相关的遗传性佝偻病的分子基础合理化。

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