Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus

Ciliary defects and obesity has been associated, but the underlying mechanism is unclear. Here, the authors show that inhibition of ciliogenesis in POMC neurons during development results in lysosomal protein degradation-dependent axonal disruption and adult obesity in mice.

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Autores principales: Chan Hee Lee, Do Kyeong Song, Chae Beom Park, Jeewon Choi, Gil Myoung Kang, Sung Hoon Shin, Ijoo Kwon, Soyoung Park, Seongjun Kim, Ji Ye Kim, Hong Dugu, Jae Woo Park, Jong Han Choi, Se Hee Min, Jong-Woo Sohn, Min-Seon Kim
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/0116400a6a59446083a8f46c10ce075d
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spelling oai:doaj.org-article:0116400a6a59446083a8f46c10ce075d2021-12-02T15:37:19ZPrimary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus10.1038/s41467-020-19638-42041-1723https://doaj.org/article/0116400a6a59446083a8f46c10ce075d2020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19638-4https://doaj.org/toc/2041-1723Ciliary defects and obesity has been associated, but the underlying mechanism is unclear. Here, the authors show that inhibition of ciliogenesis in POMC neurons during development results in lysosomal protein degradation-dependent axonal disruption and adult obesity in mice.Chan Hee LeeDo Kyeong SongChae Beom ParkJeewon ChoiGil Myoung KangSung Hoon ShinIjoo KwonSoyoung ParkSeongjun KimJi Ye KimHong DuguJae Woo ParkJong Han ChoiSe Hee MinJong-Woo SohnMin-Seon KimNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-19 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chan Hee Lee
Do Kyeong Song
Chae Beom Park
Jeewon Choi
Gil Myoung Kang
Sung Hoon Shin
Ijoo Kwon
Soyoung Park
Seongjun Kim
Ji Ye Kim
Hong Dugu
Jae Woo Park
Jong Han Choi
Se Hee Min
Jong-Woo Sohn
Min-Seon Kim
Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
description Ciliary defects and obesity has been associated, but the underlying mechanism is unclear. Here, the authors show that inhibition of ciliogenesis in POMC neurons during development results in lysosomal protein degradation-dependent axonal disruption and adult obesity in mice.
format article
author Chan Hee Lee
Do Kyeong Song
Chae Beom Park
Jeewon Choi
Gil Myoung Kang
Sung Hoon Shin
Ijoo Kwon
Soyoung Park
Seongjun Kim
Ji Ye Kim
Hong Dugu
Jae Woo Park
Jong Han Choi
Se Hee Min
Jong-Woo Sohn
Min-Seon Kim
author_facet Chan Hee Lee
Do Kyeong Song
Chae Beom Park
Jeewon Choi
Gil Myoung Kang
Sung Hoon Shin
Ijoo Kwon
Soyoung Park
Seongjun Kim
Ji Ye Kim
Hong Dugu
Jae Woo Park
Jong Han Choi
Se Hee Min
Jong-Woo Sohn
Min-Seon Kim
author_sort Chan Hee Lee
title Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
title_short Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
title_full Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
title_fullStr Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
title_full_unstemmed Primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
title_sort primary cilia mediate early life programming of adiposity through lysosomal regulation in the developing mouse hypothalamus
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/0116400a6a59446083a8f46c10ce075d
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