垂体和垂体外促ACTH肿瘤中POMC启动子区的结构。

H Mönig, I U Ali, E H Oldfield, H M Schulte
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引用次数: 1

摘要

Proopiomelanocortin (POMC)是包括ACTH在内的多种重要内分泌肽的共同前体。POMC基因的转录受CRH通过cAMP-responsive regions正调控,并受糖皮质激素的负反馈控制,糖皮质激素通过糖皮质激素负反应元件(negative glucocorticoid responsive elements, nGRE)发挥抑制作用。利用大鼠POMC启动子进行的体外研究表明,糖皮质激素受体复合物与- 63bp结合位点的结合与POMC基因转录的抑制相关,该区域的特异性突变可消除这种作用。负反馈调节受损,虽然程度不同,但是促皮质性肿瘤(库欣病)和垂体外促ACTH肿瘤的共同特征。我们分析了11例库欣病患者的POMC基因上游启动子区,其中4例患有纳尔逊综合征,1例继发于类肺癌的异位ACTH综合征患者的POMC基因上游启动子区是否存在nGRE和/或camp反应序列的突变。从肿瘤组织中纯化DNA,作为聚合酶链反应(PCR)的模板。将POMC转录起始位点的-371 ~ - 19bp片段扩增并克隆到质粒载体上。测序采用二脱氧链终止程序。5'侧区分析显示所有肿瘤均无缺陷。我们从我们的结果中得出结论,糖皮质激素抑制POMC肽产生的缺陷可能更可能是由于复杂转录调节机制的其他组成部分的异常。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure of the POMC promoter region in pituitary and extrapituitary ACTH producing tumors.

Proopiomelanocortin (POMC) is the common precursor of a variety of important endocrine peptides including ACTH. Transcription of the POMC gene is positively regulated by CRH through cAMP-responsive regions and is under negative feedback control by glucocorticoids which exert their inhibitory effect trough negative glucocorticoid responsive elements (nGRE). In vitro studies using the rat POMC promoter suggested that binding of the glucocorticoid receptor complex to a -63 bp binding site is correlated with repression of POMC gene transcription, and that specific mutations in this region abolish this effect. Impaired negative feedback regulation, though to a different degree, is a common feature of both corticotroph tumors (Cushing's disease) and extrapituitary ACTH producing tumors. We have analyzed the upstream promoter region of POMC gene from eleven patients with Cushing's disease, four of which had Nelson's syndrome, and from one patient with an ectopic ACTH syndrome secondary to a lung carcinoid for any possible mutations in the nGRE and/or cAMP-responsive sequences. DNA was purified from tumor tissue and was used as template for polymerase chain reaction (PCR). A segment between -371 and -19 bp of the POMC transcription start site was amplified and cloned into a plasmid vector. Sequencing was performed using the dideoxy chain termination procedure. Analysis of the 5'-flanking region revealed no defect in all tumors investigated. We conclude from our results that the defective glucocorticoid repression of POMC peptides production may be more likely due to aberrancies in other components of the complex transcriptional regulatory mechanism.

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