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Insulin signaling in the hippocampus and amygdala regulates metabolism and neurobehavior.


ABSTRACT: Previous studies have shown that insulin and IGF-1 signaling in the brain, especially the hypothalamus, is important for regulation of systemic metabolism. Here, we develop mice in which we have specifically inactivated both insulin receptors (IRs) and IGF-1 receptors (IGF1Rs) in the hippocampus (Hippo-DKO) or central amygdala (CeA-DKO) by stereotaxic delivery of AAV-Cre into IRlox/lox/IGF1Rlox/lox mice. Consequently, both Hippo-DKO and CeA-DKO mice have decreased levels of the GluA1 subunit of glutamate AMPA receptor and display increased anxiety-like behavior, impaired cognition, and metabolic abnormalities, including glucose intolerance. Hippo-DKO mice also display abnormal spatial learning and memory whereas CeA-DKO mice have impaired cold-induced thermogenesis. Thus, insulin/IGF-1 signaling has common roles in the hippocampus and central amygdala, affecting synaptic function, systemic glucose homeostasis, behavior, and cognition. In addition, in the hippocampus, insulin/IGF-1 signaling is important for spatial learning and memory whereas insulin/IGF-1 signaling in the central amygdala controls thermogenesis via regulation of neural circuits innervating interscapular brown adipose tissue.

SUBMITTER: Soto M 

PROVIDER: S-EPMC6442573 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Insulin signaling in the hippocampus and amygdala regulates metabolism and neurobehavior.

Soto Marion M   Cai Weikang W   Konishi Masahiro M   Kahn C Ronald CR  

Proceedings of the National Academy of Sciences of the United States of America 20190214 13


Previous studies have shown that insulin and IGF-1 signaling in the brain, especially the hypothalamus, is important for regulation of systemic metabolism. Here, we develop mice in which we have specifically inactivated both insulin receptors (IRs) and IGF-1 receptors (IGF1Rs) in the hippocampus (Hippo-DKO) or central amygdala (CeA-DKO) by stereotaxic delivery of AAV-Cre into IR<sup>lox/lox</sup>/IGF1R<sup>lox/lox</sup> mice. Consequently, both Hippo-DKO and CeA-DKO mice have decreased levels of  ...[more]

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