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BTBR小鼠以及苯丙酮尿症enu1和enu2小鼠肝脏胞质组分中S-羧甲基-L-半胱氨酸的S-氧化作用

The S-oxidation of S-carboxymethyl-L-cysteine in hepatic cytosolic fractions from BTBR and phenylketonuria enu1 and enu2 mice.

作者信息

Steventon Glyn B, Mitchell Stephen C

机构信息

a ADMET Solutions Ltd, Ivar Gardens , Basingstoke , UK.

b Computational and Systems Medicine, Faculty of Medicine , Imperial College London , London , UK.

出版信息

Xenobiotica. 2019 Apr;49(4):495-502. doi: 10.1080/00498254.2018.1464684. Epub 2018 Apr 27.

DOI:10.1080/00498254.2018.1464684
PMID:29648495
Abstract

Mice that were heterozygous dominant for the enu1 and enu2 mutation in phenylalanine monooxygenase/phenylalanine hydroxylase (PAH) resulted in hepatic PAH assays for S-carboxymethyl-L-cysteine (SCMC) that had significantly increased calculated K (wild type (wt)/enu1, 1.84-2.12 fold increase and wt/enu2 a 2.75 fold increase in PAH assays). The heterozygous dominant phenotypes showed a significantly reduced catalytic turnover of SCMC (wt/enu1, 6.11 fold decrease and wt/enu2 an 11.25 fold decrease in calculated V). Finally, these phenotypes also had a significantly reduced clearance, C (wt/enu1, 13.02 fold and wt/enu2, a 30.80-30.94 fold decrease) The homozygous recessive phenotype (enu1/enu1) was also found to have significantly increased calculated K (2.16 fold increase), a significantly reduced calculated V (11.35-12.33 fold decrease) and C (24.75-25.00 fold decrease). The enu2/enu2, homozygous recessive phenotype had no detectable PAH activity using SCMC as substrate. The identity of the enzyme responsible for the C-oxidation of L-phenylalanine (L-Phe) and the S-oxidation of SCMC in wt/wt (BTBR) mice was identified using monoclonal antibody and selective chemical inhibitors and was found to be PAH. This in vitro mouse hepatic cytosolic fraction metabolism investigation provides further evidence to support the hypothesis that an individual possessing one variant allele for PAH will result in a poor metaboliser phenotype that is unable to produce significant amounts of S-oxide metabolites of SCMC.

摘要

苯丙氨酸单加氧酶/苯丙氨酸羟化酶(PAH)中enu1和enu2突变杂合显性的小鼠,其肝脏PAH对S-羧甲基-L-半胱氨酸(SCMC)的检测结果显示,计算得出的K值显著增加(野生型(wt)/enu1,增加1.84 - 2.12倍;wt/enu2,PAH检测中增加2.75倍)。杂合显性表型显示SCMC的催化周转率显著降低(计算得出的V值,wt/enu1降低6.11倍,wt/enu2降低11.25倍)。最后,这些表型的清除率C也显著降低(wt/enu1降低13.02倍,wt/enu2降低30.80 - 30.94倍)。纯合隐性表型(enu1/enu1)也被发现计算得出的K值显著增加(增加2.16倍),计算得出的V值显著降低(降低11.35 - 12.33倍)以及C值显著降低(降低24.75 - 25.00倍)。以SCMC为底物时,enu2/enu2纯合隐性表型未检测到PAH活性。使用单克隆抗体和选择性化学抑制剂确定了wt/wt(BTBR)小鼠中负责L-苯丙氨酸(L-Phe)的C-氧化和SCMC的S-氧化的酶的身份,发现是PAH。这项体外小鼠肝脏胞质部分代谢研究提供了进一步的证据,支持以下假设:携带一个PAH变异等位基因的个体将导致代谢不良表型,无法产生大量的SCMC的S-氧化物代谢产物。

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