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Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1

Brown adipose tissues (BAT) burn lipids to generate heat through uncoupled respiration, thus representing a powerful target to counteract lipid accumulation and obesity. The tumor suppressor liver kinase b1 (Lkb1) is a key regulator of cellular energy metabolism; and adipocyte-specific knockout of L...

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Autores principales: Xiong, Yan, Page, Jessica C., Narayanan, Naagarajan, Wang, Chao, Jia, Zhihao, Yue, Feng, Shi, Xine, Jin, Wen, Hu, Keping, Deng, Meng, Shi, Riyi, Shan, Tizhong, Yang, Gongshe, Kuang, Shihuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652135/
https://www.ncbi.nlm.nih.gov/pubmed/29032027
http://dx.doi.org/10.1016/j.ebiom.2017.09.017
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author Xiong, Yan
Page, Jessica C.
Narayanan, Naagarajan
Wang, Chao
Jia, Zhihao
Yue, Feng
Shi, Xine
Jin, Wen
Hu, Keping
Deng, Meng
Shi, Riyi
Shan, Tizhong
Yang, Gongshe
Kuang, Shihuan
author_facet Xiong, Yan
Page, Jessica C.
Narayanan, Naagarajan
Wang, Chao
Jia, Zhihao
Yue, Feng
Shi, Xine
Jin, Wen
Hu, Keping
Deng, Meng
Shi, Riyi
Shan, Tizhong
Yang, Gongshe
Kuang, Shihuan
author_sort Xiong, Yan
collection PubMed
description Brown adipose tissues (BAT) burn lipids to generate heat through uncoupled respiration, thus representing a powerful target to counteract lipid accumulation and obesity. The tumor suppressor liver kinase b1 (Lkb1) is a key regulator of cellular energy metabolism; and adipocyte-specific knockout of Lkb1 (Ad-Lkb1 KO) leads to the expansion of BAT, improvements in systemic metabolism and resistance to obesity in young mice. Here we report the unexpected finding that the Ad-Lkb1 KO mice develop hindlimb paralysis at mid-age. Gene expression analyses indicate that Lkb1 KO upregulates the expression of inflammatory cytokines in interscapular BAT and epineurial brown adipocytes surrounding the sciatic nerve. This is followed by peripheral neuropathy characterized by infiltration of macrophages into the sciatic nerve, axon degeneration, reduced nerve conductance, and hindlimb paralysis. Mechanistically, Lkb1 KO reduces AMPK phosphorylation and amplifies mammalian target-of-rapamycin (mTOR)-dependent inflammatory signaling specifically in BAT but not WAT. Importantly, pharmacological or genetic inhibition of mTOR ameliorates inflammation and prevents paralysis. These results demonstrate that BAT inflammation is linked to peripheral neuropathy.
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spelling pubmed-56521352017-10-25 Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1 Xiong, Yan Page, Jessica C. Narayanan, Naagarajan Wang, Chao Jia, Zhihao Yue, Feng Shi, Xine Jin, Wen Hu, Keping Deng, Meng Shi, Riyi Shan, Tizhong Yang, Gongshe Kuang, Shihuan EBioMedicine Research Paper Brown adipose tissues (BAT) burn lipids to generate heat through uncoupled respiration, thus representing a powerful target to counteract lipid accumulation and obesity. The tumor suppressor liver kinase b1 (Lkb1) is a key regulator of cellular energy metabolism; and adipocyte-specific knockout of Lkb1 (Ad-Lkb1 KO) leads to the expansion of BAT, improvements in systemic metabolism and resistance to obesity in young mice. Here we report the unexpected finding that the Ad-Lkb1 KO mice develop hindlimb paralysis at mid-age. Gene expression analyses indicate that Lkb1 KO upregulates the expression of inflammatory cytokines in interscapular BAT and epineurial brown adipocytes surrounding the sciatic nerve. This is followed by peripheral neuropathy characterized by infiltration of macrophages into the sciatic nerve, axon degeneration, reduced nerve conductance, and hindlimb paralysis. Mechanistically, Lkb1 KO reduces AMPK phosphorylation and amplifies mammalian target-of-rapamycin (mTOR)-dependent inflammatory signaling specifically in BAT but not WAT. Importantly, pharmacological or genetic inhibition of mTOR ameliorates inflammation and prevents paralysis. These results demonstrate that BAT inflammation is linked to peripheral neuropathy. Elsevier 2017-09-21 /pmc/articles/PMC5652135/ /pubmed/29032027 http://dx.doi.org/10.1016/j.ebiom.2017.09.017 Text en © 2017 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Xiong, Yan
Page, Jessica C.
Narayanan, Naagarajan
Wang, Chao
Jia, Zhihao
Yue, Feng
Shi, Xine
Jin, Wen
Hu, Keping
Deng, Meng
Shi, Riyi
Shan, Tizhong
Yang, Gongshe
Kuang, Shihuan
Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title_full Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title_fullStr Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title_full_unstemmed Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title_short Peripheral Neuropathy and Hindlimb Paralysis in a Mouse Model of Adipocyte-Specific Knockout of Lkb1
title_sort peripheral neuropathy and hindlimb paralysis in a mouse model of adipocyte-specific knockout of lkb1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5652135/
https://www.ncbi.nlm.nih.gov/pubmed/29032027
http://dx.doi.org/10.1016/j.ebiom.2017.09.017
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