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转录因子芳香烃受体(Ahr)通过调节 Vav3 原癌基因的表达来控制心血管和呼吸功能。

Transcriptional factor aryl hydrocarbon receptor (Ahr) controls cardiovascular and respiratory functions by regulating the expression of the Vav3 proto-oncogene.

机构信息

Centro de Investigación del Cáncer, Consejo Superior de Investigaciones Científicas-Salamanca University, 37007 Salamanca, Spain.

出版信息

J Biol Chem. 2011 Jan 28;286(4):2896-909. doi: 10.1074/jbc.M110.187534. Epub 2010 Nov 29.

Abstract

Aryl hydrocarbon receptor (Ahr) is a transcriptional factor involved in detoxification responses to pollutants and in intrinsic biological processes of multicellular organisms. We recently described that Vav3, an activator of Rho/Rac GTPases, is an Ahr transcriptional target in embryonic fibroblasts. These results prompted us to compare the Ahr(-/-) and Vav3(-/-) mouse phenotypes to investigate the implications of this functional interaction in vivo. Here, we show that Ahr is important for Vav3 expression in kidney, lung, heart, liver, and brainstem regions. This process is not affected by the administration of potent Ahr ligands such as benzo[a]pyrene. We also report that Ahr- and Vav3-deficient mice display hypertension, tachypnea, and sympathoexcitation. The Ahr gene deficiency also induces the GABAergic transmission defects present in the Vav3(-/-) ventrolateral medulla, a main cardiorespiratory brainstem center. However, Ahr(-/-) mice, unlike Vav3-deficient animals, display additional defects in fertility, perinatal growth, liver size and function, closure, spleen size, and peripheral lymphocytes. These results demonstrate that Vav3 is a bona fide Ahr target that is in charge of a limited subset of the developmental and physiological functions controlled by this transcriptional factor. Our data also reveal the presence of sympathoexcitation and new cardiorespiratory defects in Ahr(-/-) mice.

摘要

芳香烃受体(Ahr)是一种参与污染物解毒反应和多细胞生物固有生物过程的转录因子。我们最近描述了 Rho/Rac GTPases 的激活剂 Vav3 是胚胎成纤维细胞中 Ahr 的转录靶标。这些结果促使我们比较 Ahr(-/-)和 Vav3(-/-)小鼠表型,以研究这种功能相互作用在体内的意义。在这里,我们表明 Ahr 对于肾脏、肺、心脏、肝脏和脑干区域中 Vav3 的表达很重要。这个过程不受强效 Ahr 配体(如苯并[a]芘)的影响。我们还报告说,Ahr 和 Vav3 缺陷型小鼠表现出高血压、呼吸急促和交感神经兴奋。Ahr 基因缺失还会导致 Vav3(-/-)腹外侧延髓中存在的 GABA 能传递缺陷,腹外侧延髓是主要的心肺脑干中心。然而,与 Vav3 缺陷型动物不同,Ahr(-/-)小鼠还表现出生育能力、围产期生长、肝脏大小和功能、闭合、脾脏大小和外周淋巴细胞的额外缺陷。这些结果表明,Vav3 是 Ahr 的一个真正的靶标,负责这个转录因子控制的一组有限的发育和生理功能。我们的数据还揭示了 Ahr(-/-)小鼠中存在交感神经兴奋和新的心肺缺陷。

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