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首页> 外文期刊>Biochemical Pharmacology >Characterizing the effect of UDP-glucuronosyltransferase (UGT) 2B7 and UGT1A9 genetic polymorphisms on enantioselective glucuronidation of flurbiprofen.
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Characterizing the effect of UDP-glucuronosyltransferase (UGT) 2B7 and UGT1A9 genetic polymorphisms on enantioselective glucuronidation of flurbiprofen.

机译:表征UDP-葡萄糖醛糖基转移酶(UGT)2B7和UGT1A9基因多态性对氟比洛芬对映体选择性葡萄糖醛酸化的影响。

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摘要

Flurbiprofen (FPF), available commercially as a racemic mixture, is a propionic acid derivative of non-steroidal anti-inflammatory drugs (NSAIDs) with known stereoselective glucuronidation. The major enzyme catalyzing this conjugation reaction is UDP-glucuronosyltransferase (UGT) 2B7, with minor contributions by UGT1A9. This study examines the role of the genetic variants of UGT2B7 and 1A9 enzymes involved in the formation of acyl glucuronides (FPFGs). Variants caused by three single nucleotide polymorphisms (SNPs) (A71S, 211G>T; H268Y, 802C>T; and D398N, 1192G>A) in UGT2B7 and three SNPs (C3Y, 8G>A; M33T, 98T>C; D256N, 766G>A) in UGT1A9 showed activity changes toward different substrates. However the functional impacts of these SNPs on chiral substrates were not examined. Upon stable expression in Bac-to-Bac system, UGT2B7*71S (A(71)S), UGT2B7*2 (H(268)Y) and UGT2B7*5 (D(398)N) were all associated with a decrease in the formation of FPFGs. Compared with UGT2B7*1 (wild-type), UGT2B7*71S exhibited a >2-fold lower intrinsic clearance mainly by altered capacities (V(max)). Furthermore, a >14-fold decreased intrinsic clearance of the *1 protein was produced by UGT2B7*2 and UGT2B7*5. However, no significantly stereoselective difference for the formation of (R)- and (S)-FPFG was found among these UGT2B7 allozymes. UGT1A9*2 (C(3)Y) exhibited a higher V(max) (3.2-fold), K(m) (2.1-fold) and intrinsic clearance (1.6-fold) toward (S)-FPF than UGT1A9*1 (wild-type). UGT1A9*3 (M(33)T) almost lost the catalytic activity to FPF. A significantly stereoselective difference on the glucuronidation of rac-FPF was seen between the two variants compared with the wild type of UGT1A9.
机译:氟比洛芬(FPF),可以消旋混合物形式商购获得,是非甾体抗炎药(NSAID)的丙酸衍生物,具有已知的立体选择性葡糖醛酸苷化作用。催化这种偶联反应的主要酶是UDP-葡萄糖醛酸转移酶(UGT)2B7,UGT1A9的贡献很小。这项研究检查了UGT2B7和1A9酶的遗传变异与酰基葡萄糖醛酸苷(FPFGs)形成有关的作用。由UGT2B7中的三个单核苷酸多态性(SNP)(A71S,211G> T; H268Y,802C> T;和D398N,1192G> A)和三个SNP(C3Y,8G> A; M33T,98T> C; D256N, UGT1A9中的766G> A)显示了针对不同底物的活性变化。然而,未检查这些SNP对手性底物的功能影响。在Bac-to-Bac系统中稳定表达后,UGT2B7 * 71S(A(71)S),UGT2B7 * 2(H(268)Y)和UGT2B7 * 5(D(398)N)均与FPFG的形成。与UGT2B7 * 1(野生型)相比,UGT2B7 * 71S的内在清除率降低了2倍以上,这主要是由于容量(V(max))的变化所致。此外,UGT2B7 * 2和UGT2B7 * 5产生的* 1蛋白固有清除率降低了14倍以上。但是,在这些UGT2B7同工酶中,没有发现形成(R)-和(S)-FPFG的明显立体选择性差异。与UGT1A9 * 1相比,UGT1A9 * 2(C(3)Y)表现出更高的V(max)(3.2倍),K(m)(2.1倍)和向(S)-FPF的固有间隙(1.6倍)。 (野生型)。 UGT1A9 * 3(M(33)T)几乎失去了对FPF的催化活性。与野生型UGT1A9相比,在两个变体之间发现了rac-FPF的葡糖醛酸糖苷显着的立体选择性差异。

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