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Hoxa5过表达与IGFBP1上调及出生后侏儒症相关:Hoxa5与叉头框转录因子之间相互作用的证据

Hoxa5 overexpression correlates with IGFBP1 upregulation and postnatal dwarfism: evidence for an interaction between Hoxa5 and Forkhead box transcription factors.

作者信息

Foucher Isabelle, Volovitch Michel, Frain Monique, Kim J Julie, Souberbielle Jean-Claude, Gan Lixia, Unterman Terry G, Prochiantz Alain, Trembleau Alain

机构信息

CNRS UMR 8542, Ecole normale supérieure, 46 rue d'Ulm, 75230 Paris Cedex 05, France.

出版信息

Development. 2002 Sep;129(17):4065-74. doi: 10.1242/dev.129.17.4065.

Abstract

Transgenic mice expressing the homeobox gene Hoxa5 under the control of Hoxb2 regulatory elements present a growth arrest during weeks two and three of postnatal development, resulting in proportionate dwarfism. These mice present a liver phenotype illustrated by a 12-fold increase in liver insulin-like growth factor binding protein 1 (IGFBP1) mRNA and a 50% decrease in liver insulin-like growth factor 1 (IGF1) mRNA correlated with a 50% decrease in circulating IGF1. We show that the Hoxa5 transgene is expressed in the liver of these mice, leading to an overexpression of total (endogenous plus transgene) Hoxa5 mRNA in this tissue. We have used several cell lines to investigate a possible physiological interaction of Hoxa5 with the main regulator of IGFBP1 promoter activity, the Forkhead box transcription factor FKHR. In HepG2 cells, Hoxa5 has little effect by itself but inhibits the FKHR-dependent activation of the IGFBP1 promoter. In HuF cells, Hoxa5 cooperates with FKHR to dramatically enhance IGFBP1 promoter activity. This context-dependent physiological interaction probably corresponds to the existence of a direct interaction between Hoxa5 and FKHR and FoxA2/HNF3beta, as demonstrated by pull-down experiments achieved either in vitro or after cellular co-expression. In conclusion, we propose that the impaired growth observed in this transgenic line relates to a liver phenotype best explained by a direct interaction between Hoxa5 and liver-specific Forkhead box transcription factors, in particular FKHR but also Foxa2/HNF3beta. Because Hoxa5 and homeogenes of the same paralog group are normally expressed in the liver, the present results raise the possibility that homeoproteins, in addition to their established role during early development, regulate systemic physiological functions.

摘要

在Hoxb2调控元件控制下表达同源框基因Hoxa5的转基因小鼠在出生后发育的第二和第三周出现生长停滞,导致成比例的侏儒症。这些小鼠呈现出肝脏表型,其特征为肝脏胰岛素样生长因子结合蛋白1(IGFBP1)mRNA增加12倍,肝脏胰岛素样生长因子1(IGF1)mRNA减少50%,同时循环中的IGF1减少50%。我们发现Hoxa5转基因在这些小鼠的肝脏中表达,导致该组织中总(内源性加转基因)Hoxa5 mRNA的过表达。我们使用了几种细胞系来研究Hoxa5与IGFBP1启动子活性的主要调节因子叉头框转录因子FKHR之间可能存在的生理相互作用。在HepG2细胞中,Hoxa5自身作用很小,但能抑制FKHR依赖的IGFBP1启动子激活。在HuF细胞中,Hoxa5与FKHR协同作用,显著增强IGFBP1启动子活性。这种依赖于环境的生理相互作用可能对应于Hoxa5与FKHR以及FoxA /HNF3β之间存在直接相互作用,体外或细胞共表达后的下拉实验证明了这一点。总之,我们认为在该转基因品系中观察到的生长受损与肝脏表型有关,这最好通过Hoxa5与肝脏特异性叉头框转录因子之间的直接相互作用来解释,特别是FKHR,还有Foxa2 /HNF3β。由于Hoxa5和同一旁系同源组的同源基因通常在肝脏中表达,目前的结果增加了同源结构域蛋白除了在早期发育中已确定的作用外,还调节全身生理功能的可能性。

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