Ikeya Makoto, Nosaka Tetsuya, Fukushima Kumi, Kawada Masako, Furuta Yasuhide, Kitamura Toshio, Sasai Yoshiki
Organogenesis and Neurogenesis Group, RIKEN, Center for Developmental Biology, 2-2-3 Minatojima-minamimachi, Chuo, Kobe 650-0047, Japan.
Mech Dev. 2008 Sep-Oct;125(9-10):832-42. doi: 10.1016/j.mod.2008.06.011. Epub 2008 Jul 3.
Bone morphogenetic protein (BMP) signaling controls various aspects of organogenesis, including skeletal development. We previously demonstrated that the pro-BMP function of Crossveinless 2 (Cv2) is required for axial and non-axial skeletal development in mice. Here, we showed that skeletal defects in the Cv2-null mutant were reversed by the additional deletion of Twisted gastrulation (Tsg). Whereas the Cv2(-/-) mutant lacks a substantial portion of the lumbar vertebral arches, Cv2(-/-);Tsg(-/-) mice have almost normal arches. Suppression of Cv2(-/-) phenotypes is also seen in the non-axial skeleton, including the ribs, humerus, skull, and laryngeal and tracheal cartilages. In contrast, the Tsg(-/-) phenotype in the head is not significantly affected by the Cv2 mutation. These findings demonstrate that Tsg mutation is epistatic to Cv2 mutation in the major skeletal phenotypes, suggesting that the pro-BMP activity of Cv2 is, at least in part, dependent on Tsg. We also present genetic evidence for the context-dependent functional relationship between Tsg and Cv2 during mouse development.
骨形态发生蛋白(BMP)信号传导控制着器官发生的各个方面,包括骨骼发育。我们之前证明,小鼠中轴和非轴骨骼发育需要Crossveinless 2(Cv2)的前BMP功能。在此,我们表明,通过额外缺失扭结原肠胚形成蛋白(Tsg)可逆转Cv2基因敲除突变体中的骨骼缺陷。Cv2(-/-)突变体缺少大部分腰椎椎弓,而Cv2(-/-);Tsg(-/-)小鼠的椎弓几乎正常。在包括肋骨、肱骨、头骨以及喉和气管软骨在内的非轴骨骼中也观察到Cv2(-/-)表型的抑制。相反,头部的Tsg(-/-)表型不受Cv2突变的显著影响。这些发现表明,在主要骨骼表型中,Tsg突变对Cv2突变呈上位性,这表明Cv2的前BMP活性至少部分依赖于Tsg。我们还提供了小鼠发育过程中Tsg和Cv2之间上下文依赖性功能关系的遗传学证据。