Primary Cilia are Required for Cell-Type Determination and Angiogenesis in Pituitary Development

Author:

Yoshida Saishu12ORCID,Tsuneoka Yousuke3,Tsukada Takehiro2,Nakakura Takashi4,Kawamura Akira1,Kai Wataru1,Yoshida Kiyotsugu1ORCID

Affiliation:

1. Department of Biochemistry, The Jikei University School of Medicine , Tokyo 105-8461 , Japan

2. Department of Biomolecular Science, Toho University , Chiba 274-8510 , Japan

3. Department of Anatomy, Faculty of Medicine, Toho University , Tokyo 143-8540 , Japan

4. Department of Anatomy, Graduate School of Medicine, Teikyo University , Tokyo 173-8605 , Japan

Abstract

Abstract The functional maturation of the pituitary gland requires adequate cell differentiation and vascular network formation. Although spatiotemporal signaling and transcription factors are known to govern pituitary development, the involvement of primary cilia, nonmoving hair-like organelles, remains unclear. In this study, we uncovered the contribution of primary cilia to cell-type determination and vascular network formation during pituitary development. Homozygous knockout mice lacking a ciliary kinase, Dyrk2−/−, exhibit abnormalities in ciliary structure and pituitary hypoplasia, accompanied by varying degrees of failure in differentiation among all types of hormone-producing cells in the anterior lobe. Aberrations in cell differentiation in Dyrk2−/− mice arise from a decrease in the expression of crucial transcription factors, Lhx4, Lhx3, and Prop1, resulting from the inactivity of Hedgehog (Hh) signaling during the early stages of development. Furthermore, the loss of Dyrk2 results in vascular system abnormalities during the middle to late stages of development. Mechanistically, transcriptome analyses revealed the downregulation of vitronectin-integrin αvβ3-VEGFR2 signaling, essential for orchestrating vascular development. Collectively, our findings demonstrate that primary cilia play a pivotal role as critical regulators of cell survival, cell determination, and angiogenesis during pituitary gland development through the activation of Hh signaling. These findings expand our understanding of the potential link between pituitary dysfunction in human disorders and ciliopathies.

Funder

Japan Society for the Promotion of Science (JSPS) KAKENHI

Jikei University Research Fund

Takeda Science Foundation

Yamaguchi Endocrine Research Foundation

Uehara Memorial Foundation

Publisher

The Endocrine Society

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