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

IF 3.8 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Endocrinology Pub Date : 2024-07-01 DOI:10.1210/endocr/bqae085
Saishu Yoshida, Yousuke Tsuneoka, Takehiro Tsukada, Takashi Nakakura, Akira Kawamura, Wataru Kai, Kiyotsugu Yoshida
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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.

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垂体发育过程中的细胞类型确定和血管生成需要初级纤毛。
脑垂体的功能成熟需要充分的细胞分化和血管网络形成。尽管已知时空信号传导和转录因子控制着垂体的发育,但原生纤毛这种不动的毛发状细胞器的参与仍不清楚。在这项研究中,我们发现了初级纤毛对垂体发育过程中细胞类型决定和血管网络形成的贡献。缺乏纤毛激酶的同源基因敲除小鼠(Dyrk2-/-)表现出纤毛结构异常和垂体发育不良,并伴有不同程度的前叶各类激素分泌细胞分化失败。Dyrk2-/-小鼠细胞分化异常的原因是发育早期阶段刺猬(Hh)信号传导失活,导致关键转录因子Lhx4、Lhx3和Prop1的表达减少。此外,在发育的中后期,Dyrk2 的缺失会导致血管系统异常。从机理上讲,转录组分析表明维生素粘连蛋白-整合素αvβ3-血管生长因子受体2(VEGFR2)信号的下调对协调血管发育至关重要。总之,我们的研究结果表明,在垂体发育过程中,初级纤毛通过激活 Hh 信号,在细胞存活、细胞决定和血管生成方面发挥着关键的调节作用。这些发现拓展了我们对人类疾病中垂体功能障碍与纤毛疾病之间潜在联系的认识。
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来源期刊
Endocrinology
Endocrinology 医学-内分泌学与代谢
CiteScore
8.10
自引率
4.20%
发文量
195
审稿时长
2-3 weeks
期刊介绍: The mission of Endocrinology is to be the authoritative source of emerging hormone science and to disseminate that new knowledge to scientists, clinicians, and the public in a way that will enable "hormone science to health." Endocrinology welcomes the submission of original research investigating endocrine systems and diseases at all levels of biological organization, incorporating molecular mechanistic studies, such as hormone-receptor interactions, in all areas of endocrinology, as well as cross-disciplinary and integrative studies. The editors of Endocrinology encourage the submission of research in emerging areas not traditionally recognized as endocrinology or metabolism in addition to the following traditionally recognized fields: Adrenal; Bone Health and Osteoporosis; Cardiovascular Endocrinology; Diabetes; Endocrine-Disrupting Chemicals; Endocrine Neoplasia and Cancer; Growth; Neuroendocrinology; Nuclear Receptors and Their Ligands; Obesity; Reproductive Endocrinology; Signaling Pathways; and Thyroid.
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