Loomis C A, Harris E, Michaud J, Wurst W, Hanks M, Joyner A L
Ronald O. Perelman Deparment of Dermatology, New York University Medical School 10016, USA.
Nature. 1996 Jul 25;382(6589):360-3. doi: 10.1038/382360a0.
During vertebrate limb development, positional information must be specified along three distinct axes. Although much progress has been made in our understanding of the molecular interactions involved in anterior-posterior and proximal-distal limb patterning, less is known about dorsal-ventral patterning. The genes Wnt-7a and Lmx-1, which are expressed in dorsal limb ectoderm and mesoderm, respectively, are thought to be important regulators of dorsal limb differentiation. Whether a complementary set of molecules controls ventral limb development has not been clear. Here we report that Engrailed-1, a homeodomain-containing transcription factor expressed in embryonic ventral limb ectoderm, is essential for ventral limb patterning. Loss of Engrailed-1 function in mice results in dorsal transformations of ventral paw structures, and in subtle alterations along the proximal-distal limb axis. Engrailed-1 seems to act in part by repressing dorsal differentiation induced by Wnt-7a, and is essential for proper formation of the apical ectodermal ridge.
在脊椎动物肢体发育过程中,必须沿着三个不同的轴来确定位置信息。尽管我们在理解参与前后肢和近远肢模式形成的分子相互作用方面取得了很大进展,但对背腹模式形成的了解却较少。分别在背侧肢体外胚层和中胚层表达的基因Wnt-7a和Lmx-1,被认为是背侧肢体分化的重要调节因子。一组互补的分子是否控制腹侧肢体发育尚不清楚。在这里我们报告,Engrailed-1,一种在胚胎腹侧肢体外胚层表达的含同源结构域的转录因子,对于腹侧肢体模式形成至关重要。小鼠中Engrailed-1功能的丧失导致腹侧爪结构向背侧转变,并导致沿近远肢轴的细微改变。Engrailed-1似乎部分通过抑制Wnt-7a诱导的背侧分化而起作用,并且对于顶端外胚层嵴的正常形成至关重要。