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分化相关的尿路上皮细胞色素P450氧化还原酶预示着“管腔型”肌层浸润性膀胱癌的外源性物质代谢活性。

Differentiation-associated urothelial cytochrome P450 oxidoreductase predicates the xenobiotic-metabolizing activity of "luminal" muscle-invasive bladder cancers.

作者信息

Baker Simon C, Arlt Volker M, Indra Radek, Joel Madeleine, Stiborová Marie, Eardley Ian, Ahmad Niaz, Otto Wolfgang, Burger Maximilian, Rubenwolf Peter, Phillips David H, Southgate Jennifer

机构信息

Jack Birch Unit of Molecular Carcinogenesis, Department of Biology, University of York, Heslington, York, UK.

Department of Analytical, Environmental and Forensic Sciences, MRC-PHE Centre for Environment and Health, King's College London, Franklin-Wilkins Building, London, UK.

出版信息

Mol Carcinog. 2018 May;57(5):606-618. doi: 10.1002/mc.22784. Epub 2018 Feb 1.

Abstract

Extra-hepatic metabolism of xenobiotics by epithelial tissues has evolved as a self-defence mechanism but has potential to contribute to the local activation of carcinogens. Bladder epithelium (urothelium) is bathed in excreted urinary toxicants and pro-carcinogens. This study reveals how differentiation affects cytochrome P450 (CYP) activity and the role of NADPH:P450 oxidoreductase (POR). CYP1A1 and CYP1B1 transcripts were inducible in normal human urothelial (NHU) cells maintained in both undifferentiated and functional barrier-forming differentiated states in vitro. However, ethoxyresorufin O-deethylation (EROD) activity, the generation of reactive BaP metabolites and BaP-DNA adducts, were predominantly detected in differentiated NHU cell cultures. This gain-of-function was attributable to the expression of POR, an essential electron donor for all CYPs, which was significantly upregulated as part of urothelial differentiation. Immunohistology of muscle-invasive bladder cancer (MIBC) revealed significant overall suppression of POR expression. Stratification of MIBC biopsies into "luminal" and "basal" groups, based on GATA3 and cytokeratin 5/6 labeling, showed POR over-expression by a subgroup of the differentiated luminal tumors. In bladder cancer cell lines, CYP1-activity was undetectable/low in basal POR T24 and SCaBER cells and higher in the luminal POR over-expressing RT4 and RT112 cells than in differentiated NHU cells, indicating that CYP-function is related to differentiation status in bladder cancers. This study establishes POR as a predictive biomarker of metabolic potential. This has implications in bladder carcinogenesis for the hepatic versus local activation of carcinogens and as a functional predictor of the potential for MIBC to respond to prodrug therapies.

摘要

上皮组织对外源化学物的肝外代谢已演变为一种自我防御机制,但有可能促成致癌物的局部活化。膀胱上皮(尿路上皮)浸泡在排泄出的尿液毒物和致癌物前体中。本研究揭示了分化如何影响细胞色素P450(CYP)活性以及NADPH:P450氧化还原酶(POR)的作用。CYP1A1和CYP1B1转录本在体外维持未分化和功能性屏障形成分化状态的正常人尿路上皮(NHU)细胞中均可诱导。然而,乙氧异吩唑酮O-脱乙基酶(EROD)活性、活性BaP代谢物的生成以及BaP-DNA加合物,主要在分化的NHU细胞培养物中检测到。这种功能获得归因于POR的表达,POR是所有CYPs的必需电子供体,作为尿路上皮分化的一部分,其表达显著上调。肌肉浸润性膀胱癌(MIBC)的免疫组织学显示POR表达总体上受到显著抑制。基于GATA3和细胞角蛋白5/6标记将MIBC活检标本分层为“管腔型”和“基底型”组,结果显示分化的管腔型肿瘤亚组中POR过表达。在膀胱癌细胞系中,基础POR的T24和SCaBER细胞中CYP1活性不可检测/较低,而管腔型POR过表达的RT4和RT112细胞中的CYP1活性高于分化的NHU细胞,这表明CYP功能与膀胱癌的分化状态相关。本研究将POR确立为代谢潜能的预测生物标志物。这对于膀胱癌发生过程中致癌物的肝脏活化与局部活化以及作为MIBC对前体药物治疗反应潜能的功能预测指标具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9a4/5900743/1959405a1fcb/MC-57-606-g001.jpg

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