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与未发生因基因侧翼序列点突变产生雌激素反应元件的肾脏相比,雌激素诱导的仓鼠肾肿瘤中c-fos表达的差异调节。

Differential regulation of c-fos expression in estrogen-induced hamster renal tumors compared with kidney not due to creation of an estrogen-response element by point mutation in the gene's flanking sequence.

作者信息

Sarabia S F, Liehr J G

机构信息

Department of Pharmacology and Toxicology, The University of Texas Medical Branch, Galveston, USA.

出版信息

Mol Carcinog. 1999 Apr;24(4):255-62.

Abstract

The conversion of a palindromic sequence, GGTCTnnnAGACC, in the 5'-flanking region of the murine c-fos proto-oncogene into a functional estrogen-response element by a single base change into GGTC(A/G)nnnAGACC has previously been postulated [Nawaz et al., 1993] as a possible mechanism of the induction of tumors by estrogens. This attractive hypothesis has been investigated in estradiol-induced Syrian hamster kidneytumors, in H-301 kidney tumor cells (a cell line derived from the Syrian hamster tumor), and in normal kidney tissue. The c-fos gene is differentially regulated by a classical estrogen receptor-mediated process in tumors, whereas in the acutely treated kidney, estradiol induces c-fos expression independent of estrogen-receptor function. In this study, we identified in the 5'-flanking region of the hamster kidney c-fos gene the sequence AGTCCnnnAGACC, which closely resembled but did not appear to function as an estrogen-response element. No mutations were detected in this sequence or in the 5'-flanking region of c-fos genes from three different primary tumors and from H-301 tumor cells. To rule out the possibility of a low copy number of mutant alleles in a tumor sample, polymerase chain reaction-based single-strand conformation polymorphism analysis was performed on 372 base pairs of the 5'-flank of the c-fos gene (-367 to +5 base pairs relative to the transcription start point). Nine different kidney tumor DNA samples and five normal kidney tissue samples (controls) produced an identical pattern of DNA bands, suggesting a lack of natural polymorphisms and mutations in this region of the c-fos gene. Acute treatment of hamsters with 17beta-estradiol for 6 h significantly induced renal c-fos mRNA expression, whereas control levels of c-fos were restored by co-treatment with estradiol and either N-acetyl-L-cysteine or alpha-naphthoflavone. We concluded that the previously observed change in regulatory control of c-fos expression in kidney versus estradiol-induced tumors does not involve the creation of a functional estrogen-response element by single point mutation in the 5'-flanking region of the gene. Additionally, c-fos expression in estradiol-treated hamster kidneys appears to be mediated by free radicals generated by the catechol metabolites of estradiol and not by the activation of any estrogen receptor.

摘要

小鼠c-fos原癌基因5'侧翼区的回文序列GGTCTnnnAGACC通过单个碱基改变为GGTC(A/G)nnnAGACC而转化为功能性雌激素反应元件,此前已被推测[Nawaz等人,1993]是雌激素诱导肿瘤的一种可能机制。这一引人注目的假设已在雌二醇诱导的叙利亚仓鼠肾肿瘤、H-301肾肿瘤细胞(一种源自叙利亚仓鼠肿瘤的细胞系)以及正常肾组织中进行了研究。在肿瘤中,c-fos基因受经典雌激素受体介导的过程差异调节,而在急性处理的肾脏中,雌二醇诱导c-fos表达独立于雌激素受体功能。在本研究中,我们在仓鼠肾c-fos基因的5'侧翼区鉴定出序列AGTCCnnnAGACC,其与雌激素反应元件相似但似乎不具有该功能。在该序列以及来自三种不同原发性肿瘤和H-301肿瘤细胞的c-fos基因的5'侧翼区未检测到突变。为排除肿瘤样本中突变等位基因低拷贝数的可能性,对c-fos基因5'侧翼的372个碱基对(相对于转录起始点为-367至+5个碱基对)进行了基于聚合酶链反应的单链构象多态性分析。九个不同的肾肿瘤DNA样本和五个正常肾组织样本(对照)产生了相同的DNA条带模式,表明c-fos基因的该区域缺乏自然多态性和突变。用17β-雌二醇对仓鼠进行6小时的急性处理显著诱导了肾c-fos mRNA表达,而通过雌二醇与N-乙酰-L-半胱氨酸或α-萘黄酮共同处理可使c-fos的对照水平恢复。我们得出结论,先前观察到的肾脏与雌二醇诱导的肿瘤中c-fos表达调控的变化并不涉及该基因5'侧翼区通过单点突变产生功能性雌激素反应元件。此外,雌二醇处理的仓鼠肾脏中c-fos表达似乎是由雌二醇的儿茶酚代谢产物产生的自由基介导的,而不是由任何雌激素受体的激活介导的。

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