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易洛魁族同源框基因Irx2对小鼠心脏和中脑-后脑边界的正常发育并非必需。

The Iroquois homeobox gene Irx2 is not essential for normal development of the heart and midbrain-hindbrain boundary in mice.

作者信息

Lebel Mélanie, Agarwal Pooja, Cheng Chi Wa, Kabir M Golam, Chan Toby Y, Thanabalasingham Vijitha, Zhang Xiaoyun, Cohen Dana R, Husain Mansoor, Cheng Shuk Han, Bruneau Benoit G, Hui Chi-Chung

机构信息

Program in Developmental Biology, The Hospital for Sick Children, 555 University Avenue, Toronto, Ontario M5G 1X8, Canada.

出版信息

Mol Cell Biol. 2003 Nov;23(22):8216-25. doi: 10.1128/MCB.23.22.8216-8225.2003.

Abstract

The Iroquois homeobox (Irx) genes have been implicated in the specification and patterning of several organs in Drosophila and several vertebrate species. Misexpression studies of chick, Xenopus, and zebra fish embryos have demonstrated that Irx genes are involved in the specification of the midbrain-hindbrain boundary. All six murine Irx genes are expressed in the developing heart, suggesting that they might possess distinct functions during heart development, and a role for Irx4 in normal heart development has been recently demonstrated by gene-targeting experiments. Here we describe the generation and phenotypic analysis of an Irx2-deficient mouse strain. By targeted insertion of a lacZ reporter gene into the Irx2 locus, we show that lacZ expression reproduces most of the endogenous Irx2 expression pattern. Despite the dynamic expression of Irx2 in the developing heart, nervous system, and other organs, Irx2-deficient mice are viable, are fertile, and appear to be normal. Although chick Irx2 has been implicated in the development of the midbrain-hindbrain region, we show that Irx2-deficient mice develop a normal midbrain-hindbrain boundary. Furthermore, Irx2-deficient mice have normal cardiac morphology and function. Functional compensation by other Irx genes might account for the absence of a phenotype in Irx2-deficient mice. Further studies of mutant mice of other Irx genes as well as compound mutant mice will be necessary to uncover the functional roles of these evolutionarily conserved transcriptional regulators in development and disease.

摘要

易洛魁同源框(Irx)基因与果蝇和几种脊椎动物物种中多个器官的特化和模式形成有关。对鸡、非洲爪蟾和斑马鱼胚胎的异位表达研究表明,Irx基因参与中脑-后脑边界的特化。所有6个小鼠Irx基因都在发育中的心脏中表达,这表明它们在心脏发育过程中可能具有不同的功能,并且最近通过基因靶向实验证明了Irx4在正常心脏发育中的作用。在此,我们描述了Irx2基因敲除小鼠品系的构建及表型分析。通过将lacZ报告基因靶向插入Irx2基因座,我们发现lacZ表达重现了大部分内源性Irx2的表达模式。尽管Irx2在发育中的心脏、神经系统和其他器官中动态表达,但Irx2基因敲除小鼠是存活的、可育的,并且外观正常。虽然鸡的Irx2与中脑-后脑区域的发育有关,但我们发现Irx2基因敲除小鼠的中脑-后脑边界发育正常。此外,Irx2基因敲除小鼠的心脏形态和功能正常。其他Irx基因的功能补偿可能是Irx2基因敲除小鼠无表型的原因。有必要进一步研究其他Irx基因突变小鼠以及复合突变小鼠,以揭示这些进化上保守的转录调节因子在发育和疾病中的功能作用。

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