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Gene deletion in urothelium by specific expression of Cre recombinase.

机译:通过Cre重组酶的特异性表达在尿路上皮中基因缺失。

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摘要

Urothelium that lines almost the entire urinary tract acts as a permeability barrier and is involved in the pathogenesis of major urinary diseases, including urothelial carcinoma, urinary tract infection, and interstitial cystitis. However, investigation of urothelial biology and diseases has been hampered by the lack of tissue-specific approaches. To address this deficiency, we sought to develop a urothelium-specific knockout system using the Cre/loxP strategy. Transgenic mouse lines were generated in which a 3.6-kb mouse uroplakin II (UPII) promoter was used to drive the expression of Cre recombinase (Cre). Among the multiple tissues analyzed, Cre was found to be expressed exclusively in the urothelia of the transgenic mice. Crossing a UPII-Cre transgenic line with a ROSA26-LacZ reporter line, in which LacZ expression depends on Cre-mediated deletion of a floxed "stop" sequence, led to LacZ expression only in the urothelium. Gene recombination was also observed when the UPII-Cre line was crossed to an independent line in which a part of the p53 gene was flanked by the loxP sequences (floxed p53). Truncation of the p53 gene and mRNA was observed exclusively in the urothelia of double transgenic mice harboring both the UPII-Cre transgene and the floxed p53 allele. These results demonstrate for the first time the feasibility and potentially wide applicability of the UPII-Cre transgenic mice to inactivate any genes of interest in the urothelium.
机译:几乎遍布整个尿路的尿路上皮起到通透性屏障的作用,参与主要泌尿系统疾病的发病机制,包括尿路上皮癌、尿路感染和间质性膀胱炎。然而,由于缺乏组织特异性方法,尿路上皮生物学和疾病的研究受到阻碍。为了解决这一缺陷,我们试图使用 Cre/loxP 策略开发一种尿路上皮特异性敲除系统。生成转基因小鼠品系,其中使用 3.6 kb 小鼠 uroplakin II (UPII) 启动子驱动 Cre 重组酶 (Cre) 的表达。在分析的多个组织中,发现Cre仅在转基因小鼠的尿路上皮中表达。将 UPII-Cre 转基因系与 ROSA26-LacZ 报告基因系杂交,其中 LacZ 表达依赖于 Cre 介导的 floxed“终止”序列的缺失,导致 LacZ 仅在尿路上皮中表达。当 UPII-Cre 系与独立系交叉时,也观察到基因重组,其中 p53 基因的一部分被 loxP 序列(floxed p53)侧翼。p53 基因和 mRNA 的截断仅在同时携带 UPII-Cre 转基因和绒毛 p53 等位基因的双转基因小鼠的尿路上皮中观察到。这些结果首次证明了UPII-Cre转基因小鼠灭活尿路上皮中任何目标基因的可行性和潜在的广泛适用性。

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