The period of the somite segmentation clock is sensitive to Notch activity

Author:

Kim Woong12,Matsui Takaaki12,Yamao Masataka3,Ishibashi Makoto4,Tamada Kota5,Takumi Toru5,Kohno Kenji6,Oba Shigeyuki7,Ishii Shin27,Sakumura Yuichi23,Bessho Yasumasa12

Affiliation:

1. Laboratory of Gene Regulation Research, Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan

2. Institute for Bioinformatics Research and Development (BIRD), Japan Science and Technology Agency (JST), Tokyo 102-8666, Japan

3. Theoretical Life-Science Laboratory, Graduate School of Information Science, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan

4. Department of Anatomy and Developmental Biology, Kyoto University Graduate School of Medicine, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan

5. Laboratory of Integrative Bioscience, Graduate School of Biomedical Sciences, Hiroshima University, Minami, Hiroshima 734-8553, Japan

6. Laboratory of Molecular and Cell Genetics, Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan

7. Integrated Systems Biology Laboratory, Graduate School of Informatics, Kyoto University, Uji, Kyoto 611-0011, Japan

Abstract

The number of vertebrae is defined strictly for a given species and depends on the number of somites, which are the earliest metameric structures that form in development. Somites are formed by sequential segmentation. The periodicity of somite segmentation is orchestrated by the synchronous oscillation of gene expression in the presomitic mesoderm (PSM), termed the “somite segmentation clock,” in which Notch signaling plays a crucial role. Here we show that the clock period is sensitive to Notch activity, which is fine-tuned by its feedback regulator, Notch-regulated ankyrin repeat protein (Nrarp), and that Nrarp is essential for forming the proper number and morphology of axial skeleton components. Null-mutant mice for Nrarp have fewer vertebrae and have defective morphologies. Notch activity is enhanced in the PSM of the Nrarp−/– embryo, where the ∼2-h segmentation period is extended by 5 min, thereby forming fewer somites and their resultant vertebrae. Reduced Notch activity partially rescues the Nrarp−/– phenotype in the number of somites, but not in morphology. Therefore we propose that the period of the somite segmentation clock is sensitive to Notch activity and that Nrarp plays essential roles in the morphology of vertebrae and ribs.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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