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体内Hoxd增强子的种间交换诱导骶骨过早转录和前移。

Interspecies exchange of a Hoxd enhancer in vivo induces premature transcription and anterior shift of the sacrum.

作者信息

Gérard M, Zákány J, Duboule D

机构信息

Department of Zoology and Animal Biology, University of Geneva, Sciences III, Switzerland.

出版信息

Dev Biol. 1997 Oct 1;190(1):32-40. doi: 10.1006/dbio.1997.8679.

Abstract

The precise activation, in space and time, of vertebrate Hox genes is an essential requirement for normal morphogenesis. In order to assess for the functional potential of evolutionary conserved Hox regulatory sequences, a phylogenetically conserved bipartite regulatory element necessary for proper spatial and temporal activation of the Hoxd-11 gene was replaced by its fish counterpart in the HoxD complex of mice, using an ES cell-based targeted exchange. Fetuses carrying this replacement activated Hoxd-11 transcription prematurely, which led to a rostral shift of its expression boundary and a consequent anterior transposition of the sacrum. These results demonstrate the high phylogenetic conservation of regulatory mechanisms acting over vertebrate Hox complexes and suggest that minor time difference (heterochronies) in Hox gene activation may have contributed to important morphological variations in the course of evolution.

摘要

脊椎动物Hox基因在空间和时间上的精确激活是正常形态发生的基本要求。为了评估进化保守的Hox调控序列的功能潜力,利用基于胚胎干细胞的靶向交换,将小鼠HoxD复合体中Hoxd - 11基因在空间和时间上正确激活所必需的系统发育保守的二分调控元件替换为其鱼类对应元件。携带这种替换的胎儿过早激活了Hoxd - 11转录,这导致其表达边界向头侧移位,进而导致骶骨向前移位。这些结果证明了作用于脊椎动物Hox复合体的调控机制具有高度的系统发育保守性,并表明Hox基因激活中的微小时间差异(异时性)可能在进化过程中促成了重要的形态学变化。

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