Zákány József, Kmita Marie, Duboule Denis
Department of Zoology and Animal Biology and National Program Frontiers in Genetics, University of Geneva, Sciences III, Quai Ernest Ansermet 30, 1211 Geneva 4, Switzerland.
Science. 2004 Jun 11;304(5677):1669-72. doi: 10.1126/science.1096049.
Anterior-to-posterior patterning, the process whereby our digits are differently shaped, is a key aspect of limb development. It depends on the localized expression in posterior limb bud of Sonic hedgehog (Shh) and the morphogenetic potential of its diffusing product. By using an inversion of and a large deficiency in the mouse HoxD cluster, we found that a perturbation in the early collinear expression of Hoxd11, Hoxd12, and Hoxd13 in limb buds led to a loss of asymmetry. Ectopic Hox gene expression triggered abnormal Shh transcription, which in turn induced symmetrical expression of Hox genes in digits, thereby generating double posterior limbs. We conclude that early posterior restriction of Hox gene products sets up an anterior-posterior prepattern, which determines the localized activation of Shh. This signal is subsequently translated into digit morphological asymmetry by promoting the late expression of Hoxd genes, two collinear processes relying on opposite genomic topographies, upstream and downstream Shh signaling.
前后模式形成是肢体发育的一个关键方面,即我们手指呈现不同形状的过程。它依赖于音猬因子(Shh)在后肢芽中的局部表达及其扩散产物的形态发生潜能。通过对小鼠HoxD基因簇进行倒置和大片段缺失,我们发现肢芽中Hoxd11、Hoxd12和Hoxd13早期共线性表达的扰动会导致不对称性丧失。异位Hox基因表达引发异常的Shh转录,进而诱导手指中Hox基因的对称表达,从而产生双后肢。我们得出结论,Hox基因产物的早期后部限制建立了一个前后预模式,该预模式决定了Shh的局部激活。随后,通过促进Hoxd基因的晚期表达,这个信号被转化为手指形态不对称,这两个共线性过程依赖于相反的基因组拓扑结构,即Shh信号的上游和下游。