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Primary cilia regulate adaptive responses to fasting

Cited 5 time in Web of Science Cited 6 time in Scopus
Authors

Yang, Dong Joo; Tran, Le Trung; Yoon, Seul Gi; Seong, Je Kyung; Shin, Dong Min; Choi, Yun-Hee; Kim, Ki Woo

Issue Date
2022-10
Publisher
Elsevier BV
Citation
Metabolism: Clinical and Experimental, Vol.135, p. 155273
Abstract
Objective: Neuronal primary cilia are known to be a required organelle for energy balance and leptin action. However, whether primary cilia directly mediate adaptive responses during starvation is yet unknown. Therefore, we investigated the counterregulatory roles of primary cilia, and their related leptin action in energy-depleted condition. Method: We generated leptin receptor (LepR) neuron-specific primary cilia knockout (Ift88 KOLepR) mice. Leptin-mediated electrophysiological properties of the neurons in fasting condition were assessed using patch-clamp technique. Adaptive responses and neuroendocrine reflexes were measured by monitoring counterregulatory hormones. Results: In fasting state, the leptin-induced neuronal excitability and leptin homeostasis were impaired in Ift88 KOLepR. In addition, the Ift88 KOLepR exhibited aberrant fasting responses including lesser body weight loss, decreased energy expenditure, and lower heat generation compared to wild-type littermates. Furthermore, the primary cilia in LepR neurons are necessary for counterregulatory responses and leptin-mediated neuroendocrine adaptation to starvation. Conclusion: Our results demonstrated that the neuronal primary cilia are crucial neuronal components mediating the adaptive counterregulatory responses to starvation.
ISSN
0026-0495
URI
https://hdl.handle.net/10371/205012
DOI
https://doi.org/10.1016/j.metabol.2022.155273
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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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