首页> 外文期刊>Bioorganic and medicinal chemistry >Analysis of the binding sites of vitamin D 1α-hydroxylase (CYP27B1) and vitamin D 24-hydroxylase (CYP24A1) for the design of selective CYP24A1 inhibitors: Homology modelling, molecular dynamics simulations and identification of key binding requirements
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Analysis of the binding sites of vitamin D 1α-hydroxylase (CYP27B1) and vitamin D 24-hydroxylase (CYP24A1) for the design of selective CYP24A1 inhibitors: Homology modelling, molecular dynamics simulations and identification of key binding requirements

机译:用于设计CYP24A1抑制剂设计的维生素D1α-羟化酶(CYP27B1)和维生素D 24-羟化酶(CYP24A1)的结合位点分析:同源性建模,分子动力学模拟和关键结合要求的鉴定

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Graphical abstract Display Omitted Abstract A homology model of human CYP27B1 was built using MOE and was further optimised by molecular dynamics simulations of the hCYP27B1 homology model and a hCYP27B1-SDZ-88357 complex. Docking results from the hCYP27B1-SDZ-88357 complex showed amino acids Arg107, Asn387 and Asp320 have an important role in binding interaction, with Asp320 part of the important acid-alcohol pair situated in the I-helix with the conserved sequence (A/G) GX (E/D) (T/S), which assumes an essential role in the binding of an oxygen molecule for catalysis. Additional docking experiments with selective hCYP27B1 or hCYP24A1 inhibitors using both the hCYP27B1 model and a triple mutant hCYP24A1 model provided further support for the importance of H-bonding interactions with the three identified active site amino acids. To confirm the role of Arg107, Asn387 and Asp320 in the active site of hCYP27B1 compounds were designed that would form H-bonding interactions, as determined from docking experiments with the hCYP27B1 model. Subsequent synthesis and CYP24A1 and CYP27B1 enzyme assays of the designed compounds 1a and 1b showed a~5-fold selectivity for CYP27B1 confirming the importance of Asp320 in particular and also Asn387 and Arg107 as important amino acids for CYP27B1 inhibitory activity. ]]>
机译:省略了图形摘要显示,摘要使用MOE建造了人类CYP27B1的同源模型,并通过HCYP27B1同源性模型的分子动力学模拟和HCYP27B1-SDZ-88357复合物进行了进一步优化。来自HCYP27B1-SDZ-88357复合物的对接结果显示氨基酸ARG107,ASN387和ASP320在结合相互作用中具有重要作用,ASP320部分与保守序列的I螺旋中位于I螺旋中的重要酸 - 醇对中的重要作用(A / G. )GX(E / D)(T / S),其假设氧分子用于催化的结合中的重要作用。使用HCYP27B1模型和三重突变HCYP24A1模型的选择性HCYP27B1或HCYP24A1抑制剂的另外的对接实验提供了对H键合相互作用的重要性与三个鉴定的活性位点氨基酸的重要性进一步支持。为了确认ARG107的作用,设计了HCYP27B1化合物的活性位点中的ASN387和ASP320,其将形成H键合相互作用,从与HCY37B1模型中的对接实验确定。所设计的化合物1a和1b的后续合成和CYP24A1和CYP27B1酶测定为CYP27B1的选择性尤其是CYP27B1的重要性,特别是ASN387和ARG107作为CYP27B1抑制活性的重要氨基酸。 ]]>

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