Hypoxia-inducible factor-1 (HIF-1) up-regulates adrenomedullin expression in human tumor cell lines during oxygen deprivation: a possible promotion mechanism of carcinogenesis.

Q Biochemistry, Genetics and Molecular Biology Molecular endocrinology Pub Date : 2000-06-01 DOI:10.1210/mend.14.6.0473
M Garayoa, A Martínez, S Lee, R Pío, W G An, L Neckers, J Trepel, L M Montuenga, H Ryan, R Johnson, M Gassmann, F Cuttitta
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引用次数: 248

Abstract

Little is known about the molecular mechanisms that control adrenomedullin (AM) production in human cancers. We demonstrate here that the expression of AM mRNA in a variety of human tumor cell lines is highly induced in a time-dependent manner by reduced oxygen tension (1% O2) or exposure to hypoxia mimetics such as desferrioxamine mesylate (DFX) or CoCl2. This AM expression seems to be under hypoxia-inducible factor-1 (HIF-1) transcriptional regulation, since HIF-1alpha and HIF-1beta knockout mouse cell lines had an ablated or greatly reduced hypoxia AM mRNA induction. Similarly, inhibition or enhancement of HIF-1 activity in human tumor cells showed an analogous modulation of AM mRNA. Under hypoxic conditions, immunohistochemical analysis of tumor cell lines revealed elevated levels of AM and HIF-1alpha as compared with normoxia, and we also found an increase of immunoreactive AM in the conditioned medium of tumor cells analyzed by RIA. AM mRNA stabilization was shown to be partially responsible for the hypoxic up-regulated expression of AM. In addition, we have identified several putative hypoxia response elements (HREs) in the human AM gene, and reporter studies with selected HREs were capable of enhancing luciferase expression after exposure to DFX. Furthermore, transient coexpression of HIF-1alpha resulted in an augmented transactivation of the reporter gene after DFX treatment. Given that most solid human tumors have focal hypoxic areas and that AM functions as a mitogen, angiogenic factor, and apoptosis-survival factor, our findings implicate the HIF-1/AM link as a possible promotion mechanism of carcinogenesis.

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缺氧诱导因子-1 (HIF-1)在缺氧条件下上调人肿瘤细胞系肾上腺髓质素的表达:可能促进癌变的机制。
在人类癌症中,控制肾上腺髓质素(AM)产生的分子机制尚不清楚。我们在这里证明,在多种人类肿瘤细胞系中,AM mRNA的表达以一种时间依赖性的方式被降低氧张力(1% O2)或暴露于缺氧模拟物(如甲磺酸地铁胺(DFX)或CoCl2)高度诱导。这种AM表达似乎受到缺氧诱导因子-1 (HIF-1)转录调控,因为HIF-1 α和HIF-1 β敲除小鼠细胞系的缺氧AM mRNA诱导减弱或大大减少。同样,抑制或增强HIF-1在人类肿瘤细胞中的活性显示出AM mRNA的类似调节。在低氧条件下,肿瘤细胞系的免疫组化分析显示AM和hif -1 α水平较常氧条件下升高,我们也发现在RIA分析的肿瘤细胞条件培养基中免疫反应性AM增加。AM mRNA的稳定被证明是缺氧时AM表达上调的部分原因。此外,我们已经在人类AM基因中确定了几个假定的缺氧反应元件(HREs),并且具有选定HREs的报告研究能够在暴露于DFX后增强荧光素酶的表达。此外,在DFX治疗后,hif -1 α的短暂共表达导致报告基因的反激活增强。鉴于大多数实体人肿瘤都有局灶缺氧区,并且AM作为有丝分裂原、血管生成因子和细胞凋亡存活因子发挥作用,我们的研究结果提示HIF-1/AM联系可能是致癌的促进机制。
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来源期刊
Molecular endocrinology
Molecular endocrinology 医学-内分泌学与代谢
CiteScore
3.49
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: Molecular Endocrinology provides a forum for papers devoted to describing molecular mechanisms by which hormones and related compounds regulate function. It has quickly achieved a reputation as a high visibility journal with very rapid communication of cutting edge science: the average turnaround time is 28 days from manuscript receipt to first decision, and accepted manuscripts are published online within a week through Rapid Electronic Publication. In the 2008 Journal Citation Report, Molecular Endocrinology is ranked 16th out of 93 journals in the Endocrinology and Metabolism category, with an Impact Factor of 5.389.
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Editorial Reflections on the Demise of Molecular Endocrinology and the Future of Molecular Hormone Action Research. Origins of the Field of Molecular Endocrinology: A Personal Perspective. Editorial: Reflections on the Impact of Molecular Endocrinology on a Scientific Career. Reflections on the Merger of Molecular Endocrinology and Endocrinology. Editorial: Final Musings on the Impact of Molecular Endocrinology.
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