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FOXA1缺失驱动尿路上皮分化的性别差异变化,且是膀胱癌预后不良的独立预测因子。

Loss of FOXA1 Drives Sexually Dimorphic Changes in Urothelial Differentiation and Is an Independent Predictor of Poor Prognosis in Bladder Cancer.

作者信息

Reddy Opal L, Cates Justin M, Gellert Lan L, Crist Henry S, Yang Zhaohai, Yamashita Hironobu, Taylor John A, Smith Joseph A, Chang Sam S, Cookson Michael S, You Chaochen, Barocas Daniel A, Grabowska Magdalena M, Ye Fei, Wu Xue-Ru, Yi Yajun, Matusik Robert J, Kaestner Klaus H, Clark Peter E, DeGraff David J

机构信息

Department of Pathology and Laboratory Medicine, University of California, Los Angeles, California.

Department of Pathology, Microbiology and Immunology, Vanderbilt University Medical Center, Nashville, Tennessee.

出版信息

Am J Pathol. 2015 May;185(5):1385-95. doi: 10.1016/j.ajpath.2015.01.014.

Abstract

We previously found loss of forkhead box A1 (FOXA1) expression to be associated with aggressive urothelial carcinoma of the bladder, as well as increased tumor proliferation and invasion. These initial findings were substantiated by The Cancer Genome Atlas, which identified FOXA1 mutations in a subset of bladder cancers. However, the prognostic significance of FOXA1 inactivation and the effect of FOXA1 loss on urothelial differentiation remain unknown. Application of a univariate analysis (log-rank) and a multivariate Cox proportional hazards regression model revealed that loss of FOXA1 expression is an independent predictor of decreased overall survival. An ubiquitin Cre-driven system ablating Foxa1 expression in urothelium of adult mice resulted in sex-specific histologic alterations, with male mice developing urothelial hyperplasia and female mice developing keratinizing squamous metaplasia. Microarray analysis confirmed these findings and revealed a significant increase in cytokeratin 14 expression in the urothelium of the female Foxa1 knockout mouse and an increase in the expression of a number of genes normally associated with keratinocyte differentiation. IHC confirmed increased cytokeratin 14 expression in female bladders and additionally revealed enrichment of cytokeratin 14-positive basal cells in the hyperplastic urothelial mucosa in male Foxa1 knockout mice. Analysis of human tumor specimens confirmed a significant relationship between loss of FOXA1 and increased cytokeratin 14 expression.

摘要

我们之前发现,叉头框A1(FOXA1)表达缺失与侵袭性膀胱尿路上皮癌相关,还与肿瘤增殖和侵袭增加有关。这些初步发现得到了癌症基因组图谱的证实,该图谱在一部分膀胱癌中发现了FOXA1突变。然而,FOXA1失活的预后意义以及FOXA1缺失对尿路上皮分化的影响仍然未知。单因素分析(对数秩检验)和多因素Cox比例风险回归模型的应用显示,FOXA1表达缺失是总生存期降低的独立预测因素。一个泛素Cre驱动系统在成年小鼠尿路上皮中消除Foxa1表达,导致了性别特异性的组织学改变,雄性小鼠出现尿路上皮增生,雌性小鼠出现角化性鳞状化生。微阵列分析证实了这些发现,并揭示在雌性Foxa1基因敲除小鼠的尿路上皮中细胞角蛋白14表达显著增加,以及一些通常与角质形成细胞分化相关的基因表达增加。免疫组化证实雌性膀胱中细胞角蛋白14表达增加,此外还揭示在雄性Foxa1基因敲除小鼠增生的尿路上皮黏膜中细胞角蛋白14阳性基底细胞增多。对人类肿瘤标本的分析证实了FOXA1缺失与细胞角蛋白14表达增加之间存在显著关联。

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