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促红细胞生成素基因表达的氧依赖性和组织特异性调控。

Oxygen-dependent and tissue-specific regulation of erythropoietin gene expression.

作者信息

Fandrey Joachim

机构信息

Institut für Physiologie, Universität Duisburg-Essen, Hufelandstr. 55, D-45147 Essen, Germany.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2004 Jun;286(6):R977-88. doi: 10.1152/ajpregu.00577.2003.

Abstract

Hypoxia-inducible expression of the gene encoding for the glycoprotein hormone erythropoietin (EPO) is the paradigm of oxygen-regulated gene expression. EPO is the main regulator of red blood cell production and more than 100 years of research on the regulation of EPO production have led to the identification of a widespread cellular oxygen sensing mechanism. Central to this signaling cascade is the transcription factor complex hypoxia-inducible factor-1 (HIF-1). Meanwhile, it is known that HIF-1 controls more than 50 oxygen-dependent genes and is now recognized as the main regulator of oxygen homoeostasis in the body. In addition to hypoxic induction, expression of the EPO gene is tightly regulated in a tissue-specific manner. During ontogeny, production of EPO required for erythropoiesis is switched from the fetal liver to the kidneys. Here EPO is mainly synthesized in adulthood. Production of EPO has also been found in organs where it has nonerythropoietic functions: EPO is important for development of the brain and is neuroprotective, whereas it stimulates angiogenesis in the reproductive tract and possibly in other organs. Understanding oxygen and tissue-specific regulation of EPO production is of high relevance for physiology. Moreover, this knowledge might be useful for new therapies to treat human diseases.

摘要

糖蛋白激素促红细胞生成素(EPO)编码基因的缺氧诱导表达是氧调节基因表达的范例。EPO是红细胞生成的主要调节因子,100多年来对EPO生成调节的研究已导致一种广泛存在的细胞氧传感机制的发现。该信号级联反应的核心是转录因子复合物缺氧诱导因子-1(HIF-1)。同时,已知HIF-1控制50多个氧依赖性基因,现在被认为是体内氧稳态的主要调节因子。除了缺氧诱导外,EPO基因的表达还以组织特异性方式受到严格调控。在个体发育过程中,红细胞生成所需的EPO产生从胎儿肝脏转移至肾脏。在成年期,EPO主要在肾脏合成。在具有非促红细胞生成功能的器官中也发现了EPO的产生:EPO对大脑发育很重要且具有神经保护作用,而它在生殖道以及可能在其他器官中刺激血管生成。了解EPO产生的氧和组织特异性调节对生理学具有高度相关性。此外,这一知识可能对治疗人类疾病的新疗法有用。

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