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人促阿片-黑素细胞皮质素原启动子在小细胞肺癌细胞系DMS-79中的功能分析。

Functional analysis of the human pro-opiomelanocortin promoter in the small cell lung carcinoma cell line DMS-79.

作者信息

Picon A, Leblond-Francillard M, Raffin-Sanson M L, Lenne F, Bertagna X, de Keyzer Y

机构信息

INSERM CJF 9208, Institut Cochin de Génétique Moléculaire, Université René Descartes Paris V, France.

出版信息

J Mol Endocrinol. 1995 Oct;15(2):187-94. doi: 10.1677/jme.0.0150187.

Abstract

DMS-79 is a human cell line derived from a small cell lung carcinoma (SCLC), which expresses the pro-opiomelanocortin (POMC) gene. We took it as a model in which to study the mechanism of POMC gene expression in these tumors: precursor processing is altered and gene expression is essentially unresponsive to glucocorticoids. POMC gene structure appeared normal by Southern blot analysis, indicating that gene rearrangement was not responsible for its expression in DMS-79. Indeed, using transient expression of human POMC-luciferase fusion genes in DMS-79, we showed that (1) the normal human POMC promoter was functional in DMS-79, and (2) the same proximal promoter region (-417; + 21) produced the full transcriptional activity in DMS-79 and in the mouse pituitary cell line AtT-20. Progressive 5' deletion analysis revealed differences between AtT-20 and DMS-79: region (-611; -376) was active in AtT-20 and not in DMS-79, whereas region (-95; -161) was active in both cell lines and (-376; -417) was only active in DMS-79. The latter partially overlaps a motif homologous to the DE-2 rat element which confers the tissue-specific expression of POMC in AtT-20 cells; however, this motif had no effect in DMS-79. These data suggest that POMC gene transcription is achieved through a different set of transacting factors in DMS-79 and AtT-20. Altogether, our results provide evidence that DMS-79 is a valid model of tumors responsible for the ectopic ACTH syndrome and that the mechanism of POMC gene expression in these SCLC cells is different from that in pituitary cells.

摘要

DMS - 79是一种源自小细胞肺癌(SCLC)的人类细胞系,它表达促阿片 - 黑素细胞皮质素原(POMC)基因。我们将其作为一个模型来研究这些肿瘤中POMC基因表达的机制:前体加工发生改变,并且基因表达对糖皮质激素基本无反应。通过Southern印迹分析,POMC基因结构看起来正常,这表明基因重排并非其在DMS - 79中表达的原因。实际上,利用人POMC - 荧光素酶融合基因在DMS - 79中的瞬时表达,我们发现:(1)正常人POMC启动子在DMS - 79中具有功能,并且(2)相同的近端启动子区域(-417;+21)在DMS - 79和小鼠垂体细胞系AtT - 20中均产生了完整的转录活性。渐进性5'缺失分析揭示了AtT - 20和DMS - 79之间的差异:区域(-611;-376)在AtT - 20中具有活性而在DMS - 79中无活性,而区域(-95;-161)在两种细胞系中均有活性,(-376;-417)仅在DMS - 79中有活性。后者部分重叠了与DE - 2大鼠元件同源的一个基序,该基序赋予POMC在AtT - 20细胞中的组织特异性表达;然而,这个基序在DMS - 79中没有作用。这些数据表明,在DMS - 79和AtT - 20中,POMC基因转录是通过不同的一组反式作用因子实现的。总之,我们的结果提供了证据,表明DMS - 79是导致异位ACTH综合征的肿瘤的有效模型,并且这些小细胞肺癌细胞中POMC基因表达的机制与垂体细胞中的不同。

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