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分子建模揭示拟南芥中四种苯丙烷类P450s的常见活性位点结构和结合策略。

Common active site architecture and binding strategy of four phenylpropanoid P450s from Arabidopsis thaliana as revealed by molecular modeling.

作者信息

Rupasinghe Sanjeewa, Baudry Jerome, Schuler Mary A

机构信息

Department of Cell and Structural Biology and School of Chemical Sciences, University of Illinois, Urbana, IL 61801, USA.

出版信息

Protein Eng. 2003 Oct;16(10):721-31. doi: 10.1093/protein/gzg094.

Abstract

Despite extensive primary sequence diversity, crystal structures of several bacterial cytochrome P450 monooxygenases (P450s) and a single eukaryotic P450 indicate that these enzymes share a structural core of alpha-helices and beta-sheets and vary in the loop regions contacting individual substrates. To determine the extent to which individual structural features are conserved among divergent P450s existing in a single biosynthetic pathway, we have modeled the structures of four highly divergent P450s (CYP73A5, CYP84A1, CYP75B1, CYP98A3) in the Arabidopsis phenylpropanoid pathway synthesizing lignins, flavonoids and anthocyanins. Analysis of these models has indicated that, despite primary sequence identities as low as 13%, the structural cores and several loop regions of these P450s are highly conserved. Substrate docking indicated that all four enzymes employ a common strategy to identify their substrates in that their cinnamate-derived substrates align along helix I with their aromatic ring positioned towards the C-terminus of this helix and their aliphatic tails positioned towards the N-terminus. Further similarity was observed in the way the substrates contact the consensus P450 substrate recognition sites (SRS). Residues predicted to contact the aromatic ring region exist in SRS5, SRS6 and the C-terminal portion of SRS4 and residues contacting the distal end of each substrate exist in SRS1, SRS2 and the N-terminal portion of SRS4. Alignments of the regions contacting the aromatic ring region indicate that SRS4, SRS5 and SRS6 share higher degrees of sequence conservation than found in SRS1, SRS2 or the full-length protein.

摘要

尽管细菌细胞色素P450单加氧酶(P450s)的一级序列存在广泛差异,但几种细菌P450s和一种真核P450的晶体结构表明,这些酶共享一个由α-螺旋和β-折叠组成的结构核心,并且在与各个底物接触的环区有所不同。为了确定在单个生物合成途径中存在的不同P450s之间各个结构特征的保守程度,我们对拟南芥苯丙烷类途径中合成木质素、类黄酮和花青素的四种高度不同的P450s(CYP73A5、CYP84A1、CYP75B1、CYP98A3)的结构进行了建模。对这些模型的分析表明,尽管一级序列同一性低至13%,但这些P450s的结构核心和几个环区高度保守。底物对接表明,所有四种酶采用共同策略来识别其底物,即它们的肉桂酸衍生底物沿着螺旋I排列,其芳香环朝向该螺旋的C末端,脂肪族尾部朝向N末端。在底物与共有P450底物识别位点(SRS)的接触方式上也观察到了进一步的相似性。预测与芳香环区域接触的残基存在于SRS5、SRS6和SRS4的C末端部分,而与每个底物远端接触的残基存在于SRS1、SRS2和SRS4的N末端部分。与芳香环区域接触的区域比对表明,SRS4、SRS5和SRS6的序列保守程度高于SRS1、SRS2或全长蛋白。

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