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变异胚胎癌细胞系RAC65的视黄酸抗性是由截短的RARα表达引起的。

Retinoic acid resistance of the variant embryonal carcinoma cell line RAC65 is caused by expression of a truncated RAR alpha.

作者信息

Kruyt F A, van der Veer L J, Mader S, van den Brink C E, Feijen A, Jonk L J, Kruijer W, van der Saag P T

机构信息

Hubrecht Laboratory, Netherlands Institute for Development Biology, Utrecht.

出版信息

Differentiation. 1992 Jan;49(1):27-37. doi: 10.1111/j.1432-0436.1992.tb00766.x.

Abstract

P19 embryonal carcinoma (EC) cells differentiate when treated with retinoic acid (RA). The P19 EC-derived mutant cell line RAC65 is resistant to the differentiation-inducing activity of RA. We show that these cells express a truncated retinoic acid receptor alpha(mRAR alpha-RAC65), probably due to the integration of a transposon-like element in the RAR alpha gene. This receptor lacks 71 C-terminal amino acids and terminates in the ligand-binding domain. In CAT assays in RAC65 cells, mRAR alpha-RAC65 fails to trans-activate the RAR beta promoter, which contains a RA-response element. In wild-type P19 EC cells mRAR alpha-RAC65 functions as a dominant-negative repressor of RA-induced RAR beta activation. Gel retardation assays demonstrate that mRAR alpha-RAC65 is still able to bind to the RA-response element of the RAR beta promoter, indicating that competition with functional RARs for the same binding site leads to the observed dominant-negative effect. In addition, in two RAC65 clones in which wild-type hRAR alpha was stably transfected RA-sensitivity was restored and in one RAR beta expression could be induced by RA. Taken together, these data show that the primary cause of RA-resistance of RAC65 cells is the expression of a defective RAR alpha, which prevents the trans-activation of RA-responsive genes and results in a loss of the ability to differentiate.

摘要

P19胚胎癌细胞在用视黄酸(RA)处理时会发生分化。源自P19胚胎癌的突变细胞系RAC65对RA的分化诱导活性具有抗性。我们发现这些细胞表达一种截短的视黄酸受体α(mRARα-RAC65),这可能是由于转座子样元件整合到了RARα基因中。该受体缺少71个C末端氨基酸,且在配体结合域终止。在RAC65细胞的CAT分析中,mRARα-RAC65无法反式激活含有RA反应元件的RARβ启动子。在野生型P19胚胎癌细胞中,mRARα-RAC65作为RA诱导的RARβ激活的显性负性抑制剂发挥作用。凝胶阻滞分析表明,mRARα-RAC65仍然能够结合到RARβ启动子的RA反应元件上,这表明与功能性RAR竞争相同的结合位点导致了观察到的显性负性效应。此外,在两个稳定转染了野生型hRARα的RAC65克隆中,RA敏感性得以恢复,并且在其中一个克隆中,RA能够诱导RARβ表达。综上所述,这些数据表明RAC65细胞对RA抗性的主要原因是缺陷型RARα的表达,它阻止了RA反应基因的反式激活,并导致分化能力丧失。

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