Yoon J K, Wold B
Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.
Genes Dev. 2000 Dec 15;14(24):3204-14. doi: 10.1101/gad.850000.
Paraxial mesoderm in vertebrates gives rise to all trunk and limb skeletal muscles, the trunk skeleton, and portions of the trunk dermis and vasculature. We show here that germline deletion of mouse pMesogenin1, a bHLH class gene specifically expressed in developmentally immature unsegmented paraxial mesoderm, causes complete failure of somite formation and segmentation of the body trunk and tail. At the molecular level, the phenotype features dramatic loss of expression within the presomitic mesoderm of Notch/Delta pathway components and oscillating somitic clock genes that are thought to control segmentation and somitogenesis. Subsequent patterning and specification steps for paraxial mesoderm also fail, leading to a complete absence of all trunk paraxial mesoderm derivatives, which include skeletal muscle, vertebrae, and ribs. We infer that pMesogenin1 is an essential upstream regulator of trunk paraxial mesoderm development and segmentation.
脊椎动物的轴旁中胚层产生所有躯干和肢体骨骼肌、躯干骨骼以及部分躯干真皮和脉管系统。我们在此表明,小鼠pMesogenin1(一种在发育未成熟的未分段轴旁中胚层中特异性表达的bHLH类基因)的种系缺失会导致体节形成以及躯干和尾部身体分段完全失败。在分子水平上,该表型的特征是Notch/Delta信号通路成分以及被认为控制分段和体节发生的振荡体节时钟基因在前体节中胚层内的表达显著丧失。轴旁中胚层随后的模式形成和特化步骤也失败,导致所有躯干轴旁中胚层衍生物完全缺失,这些衍生物包括骨骼肌、椎骨和肋骨。我们推断pMesogenin1是躯干轴旁中胚层发育和分段的必需上游调节因子。