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Defining the Transcriptional Targets of Leptin Reveals a Role for <i>Atf3</i> in Leptin Action.

Author
Abstract
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Leptin acts via its receptor (LepRb) to modulate gene expression in hypothalamic LepRb-expressing neurons, thereby controlling energy balance and glucose homeostasis. Despite the importance of the control of gene expression in hypothalamic LepRb neurons for leptin action, the transcriptional targets of LepRb signaling have remained undefined because LepRb cells contribute a small fraction to the aggregate transcriptome of the brain regions in which they reside. We thus employed translating ribosome affinity purification followed by RNA sequencing to isolate and analyze mRNA from the hypothalamic LepRb neurons of wild-type or leptin-deficient ( mice treated with vehicle or exogenous leptin. Although the expression of most of the genes encoding the neuropeptides commonly considered to represent the main targets of leptin action were altered only following chronic leptin deprivation, our analysis revealed other transcripts that were coordinately regulated by leptin under multiple treatment conditions. Among these, acute leptin treatment increased expression of the transcription factor in LepRb neurons. Furthermore, ablation of from LepRb neurons (Atf3KO mice) decreased leptin efficacy and promoted positive energy balance in mice. Thus, this analysis revealed the gene targets of leptin action, including , which represents a cellular mediator of leptin action.

Year of Publication
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2018
Journal
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Diabetes
Volume
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67
Issue
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6
Number of Pages
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1093-1104
ISSN Number
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0012-1797
URL
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http://diabetes.diabetesjournals.org/cgi/pmidlookup?view=long&pmid=29535089
DOI
:
10.2337/db17-1395
Short Title
:
Diabetes
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