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肿瘤抑制因子腺瘤性息肉病 coli 和尾相关同源结构域蛋白调节视黄醇脱氢酶 L 的表达。

The tumor suppressor adenomatous polyposis coli and caudal related homeodomain protein regulate expression of retinol dehydrogenase L.

作者信息

Jette Cicely, Peterson Peter W, Sandoval Imelda T, Manos Elizabeth J, Hadley Eryn, Ireland Chris M, Jones David A

机构信息

Huntsman Cancer Institute, Department of Oncological Sciences, University of Utah, 2000 Circle of Hope, Salt Lake City, UT 84112, USA.

出版信息

J Biol Chem. 2004 Aug 13;279(33):34397-405. doi: 10.1074/jbc.M314021200. Epub 2004 Jun 9.

Abstract

Development of normal colon epithelial cells proceeds through a systematic differentiation of cells that emerge from stem cells within the base of colon crypts. Genetic mutations in the adenomatous polyposis coli (APC) gene are thought to cause colon adenoma and carcinoma formation by enhancing colonocyte proliferation and impairing differentiation. We currently have a limited understanding of the cellular mechanisms that promote colonocyte differentiation. Herein, we present evidence supporting a lack of retinoic acid biosynthesis as a mechanism contributing to the development of colon adenomas and carcinomas. Microarray and reverse transcriptase-PCR analyses revealed reduced expression of two retinoid biosynthesis genes: retinol dehydrogenase 5 (RDH5) and retinol dehydrogenase L (RDHL) in colon adenomas and carcinomas as compared with normal colon. Consistent with the adenoma and carcinomas samples, seven colon carcinoma cell lines also lacked expression of RDH5 and RDHL. Assessment of RDH enzymatic activity within these seven cell lines showed poor conversion of retinol into retinoic acid when compared with normal cells such as normal human mammary epithelial cells. Reintroduction of wild type APC into an APC-deficient colon carcinoma cell line (HT29) resulted in increased expression of RDHL without affecting RDH5. APC-mediated induction of RDHL was paralleled by increased production of retinoic acid. Investigations into the mechanism responsible for APC induction of RDHL indicated that beta-catenin fails to repress RDHL. The colon-specific transcription factor CDX2, however, activated an RDHL promoter construct and induced endogenous RDHL. Finally, the induction of RDHL by APC appears dependent on the presence of CDX2. We propose a novel role for APC and CDX2 in controlling retinoic acid biosynthesis and in promoting a retinoid-induced program of colonocyte differentiation.

摘要

正常结肠上皮细胞的发育是通过结肠隐窝底部干细胞分化出的细胞进行系统分化来实现的。腺瘤性息肉病 coli(APC)基因的基因突变被认为通过增强结肠细胞增殖和损害分化来导致结肠腺瘤和癌的形成。目前我们对促进结肠细胞分化的细胞机制了解有限。在此,我们提供证据支持视黄酸生物合成的缺乏是导致结肠腺瘤和癌发生的一种机制。微阵列和逆转录酶 - PCR 分析显示,与正常结肠相比,结肠腺瘤和癌中两个类视黄醇生物合成基因:视黄醇脱氢酶 5(RDH5)和视黄醇脱氢酶 L(RDHL)的表达降低。与腺瘤和癌样本一致,七个结肠癌细胞系也缺乏 RDH5 和 RDHL 的表达。对这七个细胞系中 RDH 酶活性的评估表明,与正常人乳腺上皮细胞等正常细胞相比,视黄醇转化为视黄酸的转化率较低。将野生型 APC 重新引入 APC 缺陷的结肠癌细胞系(HT29)导致 RDHL 表达增加,而不影响 RDH5。APC 介导的 RDHL 诱导与视黄酸产量增加平行。对负责 APC 诱导 RDHL 的机制进行研究表明,β - 连环蛋白不能抑制 RDHL。然而,结肠特异性转录因子 CDX2 激活了 RDHL 启动子构建体并诱导内源性 RDHL。最后,APC 对 RDHL 的诱导似乎依赖于 CDX2 的存在。我们提出 APC 和 CDX2 在控制视黄酸生物合成以及促进类视黄醇诱导的结肠细胞分化程序中具有新的作用。

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