3.9 Article

Leptin differentially regulates NPY secretion in hypothalamic cell lines through distinct intracellular signal transduction pathways

Journal

REGULATORY PEPTIDES
Volume 167, Issue 2-3, Pages 192-200

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.regpep.2011.01.005

Keywords

Neuropeptide Y; Secretion; Leptin; Signal transduction; AMPK; PI3K; MAPK

Funding

  1. Canadian Institutes for Health Research (CIHR)
  2. Canadian Diabetes Association

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Leptin acts as a key peripheral hormone in distinct neurons in the hypothalamus to modulate both reproductive function and energy homeostasis. The control of neuropeptide Y (NPY) secretion is an example of a process that can be differentially regulated by leptin. In order to further understand these distinct modulatory effects, we have used immortalized, neuronal hypothalamic cell lines expressing NPY, mHypoE-38 and mHypoE-46. We found that these cell lines express the endogenous leptin receptor, ObRb, and secrete detectable levels of NPY. We exposed the neurons to 100 nM leptin for 1 h and determined that the basal levels of NPY in the cell lines were differentially regulated: NPY secretion was inhibited in mHypoE-46 neurons, whereas NPY secretion was induced in the mHypoE-38 neurons. In order to determine the mechanisms involved in the divergent regulation of NPY release, we analyzed the activity of a number of signaling components using phospho-specific antibodies directed towards specific proteins in the MAP kinase, PI3K, and AMPK pathways, among others. We found that leptin activated a different combination of second messengers in each cell line. Importantly, we could link the regulation of NPY secretion to different signaling pathways, AMPK in the mHypoE-46 and both MAPK and PI3K in the mHypoE-38 neurons. This is the first demonstration that leptin can specifically regulate individual NPY neuron secretory responses through distinct signaling pathways. (C) 2011 Elsevier B.V. All rights reserved.

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