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小鼠肢芽中异位的Meis1表达以不依赖Pbx1的方式改变前后模式。

Ectopic Meis1 expression in the mouse limb bud alters P-D patterning in a Pbx1-independent manner.

作者信息

Mercader Nadia, Selleri Licia, Criado Luis Miguel, Pallares Pilar, Parras Carlos, Cleary Michael L, Torres Miguel

机构信息

Centro Nacional de Investigaciones Cardiovasculares, Melchor Fernandez Almagro 3, 28029 Madrid, Spain.

出版信息

Int J Dev Biol. 2009;53(8-10):1483-94. doi: 10.1387/ijdb.072430nm.

Abstract

During limb development, expression of the TALE homeobox transcription factor Meis1 is activated by retinoic acid in the proximal-most limb bud regions, which give rise to the upper forelimb and hindlimb. Early subdivision of the limb bud into proximal Meis-positive and distal Meis-negative domains is necessary for correct proximo-distal (P-D) limb development in the chick, since ectopic Meis1 overexpression abolishes distal limb structures, produces a proximal shift of limb identities along the P-D axis, and proximalizes distal limb cell affinity properties. To determine whether Meis activity is also required for P-D limb specification in mammals, we generated transgenic mice ectopically expressing Meis1 in the distal limb mesenchyme under the control of the Msx2 promoter. Msx2:Meis1 transgenic mice display altered P-D patterning and shifted P-D Hox gene expression domains, similar to those previously described for the chicken. Meis proteins function in cooperation with PBX factors, another TALE homeodomain subfamily. Meis-Pbx interaction is required for nuclear localization of both proteins in cell culture, and is important for their DNA-binding and transactivation efficiency. During limb development, Pbx1 nuclear expression correlates with the Meis expression domain, and Pbx1 has been proposed as the main Meis partner in this context; however, we found that Pbx1 deficiency did not modify the limb phenotype of Msx2:Meis1 mice. Our results indicate a conserved role of Meis activity in P-D specification of the tetrapod limb and suggest that Pbx function in this context is either not required or is provided by partners other than Pbx1.

摘要

在肢体发育过程中,TALE同源框转录因子Meis1在最靠近肢体芽的区域被视黄酸激活,这些区域发育为上肢和后肢。肢体芽早期分为近端Meis阳性和远端Meis阴性区域对于鸡的近端 - 远端(P - D)肢体正常发育是必要的,因为异位过表达Meis1会消除远端肢体结构,使肢体身份沿P - D轴近端移位,并使远端肢体细胞亲和特性近端化。为了确定Meis活性在哺乳动物的P - D肢体特化中是否也是必需的,我们构建了在Msx2启动子控制下在远端肢体间充质中异位表达Meis1的转基因小鼠。Msx2:Meis1转基因小鼠表现出改变的P - D模式和移位的P - D Hox基因表达域,类似于先前在鸡中描述的情况。Meis蛋白与PBX因子(另一个TALE同源结构域亚家族)协同发挥作用。在细胞培养中,Meis - PBX相互作用是两种蛋白核定位所必需的,并且对它们的DNA结合和反式激活效率很重要。在肢体发育过程中,Pbx1核表达与Meis表达域相关,并且在这种情况下Pbx1被认为是主要的Meis伴侣;然而,我们发现Pbx1缺陷并没有改变Msx2:Meis1小鼠的肢体表型。我们的结果表明Meis活性在四足动物肢体的P - D特化中具有保守作用,并表明在这种情况下Pbx功能要么不是必需的,要么由Pbx1以外的伴侣提供。

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