Ghosh Sukla, Roy Stéphane, Séguin Carl, Bryant Susan V, Gardiner David M
Developmental Biology Center and Department of Developmental and Cell Biology, University of California at Irvine, California 92697, USA.
Dev Growth Differ. 2008 May;50(4):289-97. doi: 10.1111/j.1440-169X.2008.01000.x. Epub 2008 Mar 10.
Urodele amphibians are unique adult vertebrates because they are able to regenerate body parts after amputation. Studies of urodele limb regeneration, the key model system for vertebrate regeneration, have led to an understanding of the origin of blastema cells and the importance of positional interactions between blastema cells in the control of growth and pattern formation. Progress is now being made in the identification of the signaling pathways that regulate dedifferentiation, blastema morphogenesis, growth and pattern formation. Members of the Wnt family of secreted proteins are expressed in developing and regenerating limbs, and have the potential to control growth, pattern formation and differentiation. We have studied the expression of two non-canonical Wnt genes, Wnt-5a and Wnt-5b. We report that they are expressed in equivalent patterns during limb development and limb regeneration in the axolotl (Ambystoma mexicanum), and during limb development in other tetrapods, implying conservation of function. Our analysis of the effects of ectopic Wnt-5a expression is consistent with the hypothesis that canonical Wnt signaling functions during the early stages of regeneration to control the dedifferentiation of stump cells giving rise to the regeneration-competent cells of the blastema.
有尾两栖动物是独特的成年脊椎动物,因为它们在截肢后能够再生身体部位。有尾两栖动物肢体再生是脊椎动物再生的关键模型系统,对其研究使人们了解了芽基细胞的起源以及芽基细胞之间位置相互作用在控制生长和模式形成中的重要性。目前在识别调节去分化、芽基形态发生、生长和模式形成的信号通路方面取得了进展。分泌蛋白Wnt家族的成员在发育中和再生的肢体中表达,并有可能控制生长、模式形成和分化。我们研究了两个非经典Wnt基因Wnt-5a和Wnt-5b的表达。我们报告称,它们在美西钝口螈(Ambystoma mexicanum)的肢体发育和肢体再生过程中,以及在其他四足动物的肢体发育过程中,以相同的模式表达,这意味着功能的保守性。我们对异位表达Wnt-5a的影响的分析与以下假设一致:经典Wnt信号在再生早期发挥作用,以控制残端细胞的去分化过程从而产生具有再生能力的芽基细胞。