Riddle R D, Ensini M, Nelson C, Tsuchida T, Jessell T M, Tabin C
Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Cell. 1995 Nov 17;83(4):631-40. doi: 10.1016/0092-8674(95)90103-5.
During vertebrate limb development, the ectoderm directs the dorsoventral patterning of the underlying mesoderm. To define the molecular events involved in this process, we have analyzed the function of WNT7a, a secreted factor expressed in the dorsal ectoderm, and LMX1, a LIM homeodomain transcription factor expressed in the dorsal mesenchyme. Ectopic expression of Wnt7a is sufficient to induce and maintain Lmx1 expression in limb mesenchyme, both in vivo and in vitro. Ectopic expression of Lmx1 in the ventral mesenchyme is sufficient to generate double-dorsal limbs. Thus, the dorsalization of limb mesoderm appears to involve the WNT7a-mediated induction of Lmx1 in limb mesenchymal cells.
在脊椎动物肢体发育过程中,外胚层指导其下方中胚层的背腹模式形成。为了确定这一过程中涉及的分子事件,我们分析了WNT7a和LMX1的功能,WNT7a是一种在背侧外胚层表达的分泌因子,LMX1是一种在背侧间充质中表达的LIM同源域转录因子。Wnt7a的异位表达足以在体内和体外诱导并维持肢体间充质中Lmx1的表达。Lmx1在腹侧间充质中的异位表达足以产生双背侧肢体。因此,肢体中胚层的背化似乎涉及WNT7a介导的肢体间充质细胞中Lmx1的诱导。