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Ventromedial hypothalamic primary cilia control energy and skeletal homeostasis

Cited 34 time in Web of Science Cited 33 time in Scopus
Authors

Sun, Ji Su; Yang, Dong Joo; Kinyua, Ann W.; Yoon, Seul Gi; Seong, Je Kyung; Kim, Juwon; Moon, Seok Jun; Shin, Dong Min; Choi, Yun-Hee; Kim, Ki Woo

Issue Date
2021-01
Publisher
American Society for Clinical Investigation
Citation
Journal of Clinical Investigation, Vol.131 No.1, p. ed138107
Abstract
Dysfunction of primary cilia is related to dyshomeostasis, leading to a wide range of disorders. The ventromedial hypothalamus (VMH) is known to regulate several homeostatic processes, but those modulated specifically by VMH primary cilia are not yet known. In this study. we identify VMH primary cilia as an important organelle that maintains energy and skeletal homeostasis by modulating the autonomic nervous system. We established loss-of-function models of primary cilia in the VMH by either targeting IFT88 (IFT88-KOSF-1) using steroidogenic factor 1-Cre (SF-1-Cre) or injecting an adeno-associated virus Cre (AAV-Cre) directly into the VMH. Functional impairments of VMH primary cilia were linked to decreased sympathetic activation and central I eptin resistance, which led to marked obesity and bone-density accrual. Obesity was caused by hyperphagia, decreased energy expenditure, and blunted brown fat function and was also associated with insulin and leptin resistance. The effect of bone-density accrual was independent of obesity, as it was caused by decreased sympathetic tone resulting in increased osteoblastic and decreased osteoclastic activities in the IFT88-KOSF-1 and VMH primary cilia knockdown mice. Overall, our current study identifies VMH primary cilia as a critical hypothalamic organelle that maintains energy and skeletal homeostasis.
ISSN
0021-9738
URI
https://hdl.handle.net/10371/205820
DOI
https://doi.org/10.1172/JCI138107
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  • College of Veterinary Medicine
  • Department of Veterinary Medicine
Research Area Metabolic syndrome model construction and omics research, Mouse locomotion and metabolic phenotyping analysis, Study of immune regulatory response in obesity, 대사증후군 모델 구축 및 오믹스 연구, 마우스 운동 및 대사 표현형 분석, 비만에서의 면역 조절 반응 연구

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