TY - JOUR
T1 - The over-expression of miR-200a in the hypothalamus of ob/ob mice is linked to leptin and insulin signaling impairment
AU - Crépin, Delphine
AU - Benomar, Yacir
AU - Riffault, Laure
AU - Amine, Hamza
AU - Gertler, Arieh
AU - Taouis, Mohammed
PY - 2014/3/25
Y1 - 2014/3/25
N2 - Early in life, leptin plays a crucial role in hypothalamic neural organization. Leptin, most likely, controls neural gene expression conferring then specific phenotype regarding energy homeostasis. MicroRNAs are new regulators for several physiological functions, including the regulation of metabolism. However, the impact of leptin on hypothalamic microRNA patterns remains unknown. Here, we demonstrate that miR-200a, miR-200b and miR-429 are up-regulated in the hypothalamus of genetically obese and leptin deficient ob/. ob mice. Leptin treatment down-regulates these miRNAs in ob/. ob hypothalamus. The hypothalamic silencing of miR-200a increased the expression level of leptin receptor and insulin receptor substrate 2, reduced body weight gain, and restored liver insulin responsiveness. In addition, the overexpression of pre-miR-200a in a human neuroblastoma cell line impaired insulin and leptin signaling. These findings link the alteration of leptin and insulin signaling to the up-regulation of hypothalamic miR-200a which could be a new target for treatment of obesity.
AB - Early in life, leptin plays a crucial role in hypothalamic neural organization. Leptin, most likely, controls neural gene expression conferring then specific phenotype regarding energy homeostasis. MicroRNAs are new regulators for several physiological functions, including the regulation of metabolism. However, the impact of leptin on hypothalamic microRNA patterns remains unknown. Here, we demonstrate that miR-200a, miR-200b and miR-429 are up-regulated in the hypothalamus of genetically obese and leptin deficient ob/. ob mice. Leptin treatment down-regulates these miRNAs in ob/. ob hypothalamus. The hypothalamic silencing of miR-200a increased the expression level of leptin receptor and insulin receptor substrate 2, reduced body weight gain, and restored liver insulin responsiveness. In addition, the overexpression of pre-miR-200a in a human neuroblastoma cell line impaired insulin and leptin signaling. These findings link the alteration of leptin and insulin signaling to the up-regulation of hypothalamic miR-200a which could be a new target for treatment of obesity.
KW - Insulin-resistance
KW - Liver
KW - MicroRNAs
KW - Neurons
KW - Obesity
KW - Signaling
UR - http://www.scopus.com/inward/record.url?scp=84892836368&partnerID=8YFLogxK
U2 - 10.1016/j.mce.2013.12.016
DO - 10.1016/j.mce.2013.12.016
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C2 - 24394757
AN - SCOPUS:84892836368
SN - 0303-7207
VL - 384
SP - 1
EP - 11
JO - Molecular and Cellular Endocrinology
JF - Molecular and Cellular Endocrinology
IS - 1-2
ER -