Analysis of Cytochrome P450 Conserved Sequence Motifs between Helices E and H: Prediction of Critical Motifs and Residues in Enzyme Functions.

Numan Oezguen, Santosh Kumar
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引用次数: 14

Abstract

Rational approaches have been extensively used to investigate the role of active site residues in cytochrome P450 (CYP) functions. However, recent studies using random mutagenesis suggest an important role for non-active site residues in CYP functions. Meta-analysis of the random mutants showed that 75% of the functionally important non-active site residues are present in 20% of the entire protein between helices E and H (E-H) and conserved sequence motif (CSM) between 7 and 11. The CSM approach was developed recently to investigate the functional role of non-active site residues in CYP2B4. Furthermore, we identified and analyzed the CSM in multiple CYP families and subfamilies in the E-H region. Results from CSM analysis showed that CSM 7, 8, 10, and 11 are conserved in CYP1, CYP2, and CYP3 families, while CSM 9 is conserved only in CYP2 family. Analysis of different CYP2 subfamilies showed that CYP2B and CYP2C have similar characteristics in the CSM, while the characteristics of CYP2A and CYP2D subfamilies are different. Finally, we analyzed CSM 7, 8, 10, and 11, which are common in all the CYP families/subfamilies analyzed, in fifteen important drug-metabolizing CYPs. The results showed that while CSM 8 is most conserved among these CYPs, CSM 7, 9, and 10 have significant variations. We suggest that CSM8 has a common role in all the CYPs that have been analyzed, while CSM 7, 10, and 11 may have relatively specific role within the subfamily. We further suggest that these CSM play important role in opening and closing of the substrate access/egress channel by modulating the flexible/plastic region of the protein. Thus, site-directed mutagenesis of these CSM can be used to study structure-function and dynamic/plasticity-function relationships and to design CYP biocatalysts.

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细胞色素P450螺旋E和H之间的保守序列基序分析:预测酶功能的关键基序和残基。
合理的方法已被广泛用于研究活性位点残基在细胞色素P450 (CYP)功能中的作用。然而,最近使用随机诱变的研究表明,非活性位点残基在CYP功能中起重要作用。随机突变体的荟萃分析表明,75%的功能重要的非活性位点残基存在于整个蛋白质中20%的螺旋E和H之间(E-H)和7 - 11之间的保守序列基序(CSM)。CSM方法是最近发展起来的,用于研究CYP2B4非活性位点残基的功能作用。此外,我们鉴定并分析了E-H区多个CYP家族和亚家族的CSM。CSM分析结果显示,csm7、8、10和11在CYP1、CYP2和CYP3家族中保守,而csm9仅在CYP2家族中保守。对不同CYP2亚家族的分析表明,CYP2B和CYP2C在CSM中具有相似的特征,而CYP2A和CYP2D亚家族的特征不同。最后,我们分析了在所有CYP家族/亚家族中常见的CSM 7、8、10和11在15个重要的药物代谢CYP中的表达。结果表明,虽然csm8在这些CYPs中最为保守,但csm7、9和10存在显著差异。我们认为CSM8在已分析的所有cyp中具有共同的作用,而csm7、10和11可能在该亚家族中具有相对特定的作用。我们进一步认为,这些CSM通过调节蛋白质的柔性/塑性区域,在打开和关闭底物进入/出口通道中发挥重要作用。因此,这些CSM的定点诱变可以用于研究结构-功能和动态/塑性-功能关系,并设计CYP生物催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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