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MAPK Erk5 in Leptin Receptor‒Expressing Neurons Controls Body Weight and Systemic Energy Homeostasis in Female Mice
Author(s) -
Tetsuhiro Horie,
Gyujin Park,
Y. Inaba,
Emi Hashiuchi,
Takashi Iezaki,
Kazuya Tokumura,
Kazuya Fukasawa,
Takanori Yamada,
Manami Hiraiwa,
Yuka Kitaguchi,
Hikari Kamada,
Katsuyuki Kaneda,
Tomohiro Tanaka,
Hiroshi Inoue,
Eiichi Hinoi
Publication year - 2019
Publication title -
endocrinology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.674
H-Index - 257
eISSN - 1945-7170
pISSN - 0013-7227
DOI - 10.1210/en.2019-00090
Subject(s) - endocrinology , medicine , energy homeostasis , leptin , mapk/erk pathway , biology , leptin receptor , glucose homeostasis , adipose tissue , adipocyte , homeostasis , hypothalamus , white adipose tissue , kinase , protein kinase a , insulin , obesity , insulin resistance , microbiology and biotechnology
Extracellular signal-regulated kinase 5 (Erk5), a member of the MAPK family, is specifically phosphorylated and activated by MAPK/Erk kinase-5. Although it has been implicated in odor discrimination and long-term memory via its expression in the central nervous system, little is known regarding the physiological importance of neuronal Erk5 in body weight and energy homeostasis. In the current study, systemic insulin injection significantly induced phosphorylation of Erk5 in the hypothalamus. Moreover, Erk5 deficiency in leptin receptor (LepR)‒expressing neurons led to an obesity phenotype, with increased white adipose tissue mass due to increased adipocyte size, only in female mice fed a normal chow diet. Furthermore, Erk5 deficiency in LepR-expressing neurons showed impaired glucose tolerance along with decreased physical activity, food intake, and energy expenditure. These results suggest that Erk5 controls body weight and systemic energy homeostasis probably via its expression in hypothalamic neurons in female mice, thereby providing a target for metabolic diseases such as obesity and type 2 diabetes mellitus.

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