Anorexigenic and Orexigenic Hormone Modulation of Mammalian Target of Rapamycin Complex 1 Activity and the Regulation of Hypothalamic Agouti-Related Protein mRNA Expression

Модуляция активности комплекса 1 мишени рапамицина млекопитающих анорексигенными и орексигенными гормонами и регуляция экспрессии мРНК агути-связанного белка в гипоталамусе
Kenneth R. Watterson, Dawn Bestow, Jennifer Gallagher, D. Lee Hamilton, Fiona Ashford, Paul J. Meakin, Michael L.J. Ashford
2012-03-28

AMP-activated protein kinaseGhrelinHypothalamic AgRP mRNAInsulin and leptinmTORC1 signaling
Activation of mammalian target of rapamycin 1 (mTORC1) by nutrients, insulin and leptin leads to appetite suppression (anorexia). Contrastingly, increased AMP-activated protein kinase (AMPK) activity by ghrelin promotes appetite (orexia). However, the interplay between these mechanisms remains poorly defined. The relationship between the anorexigenic hormones, insulin and leptin, and the orexigenic hormone, ghrelin, on mTORC1 signalling was examined using S6 kinase phosphorylation as a marker for changes in mTORC1 activity in mouse hypothalamic GT1-7 cells. Additionally, the contribution of AMPK and mTORC1 signalling in relation to insulin-, leptin- and ghrelin-driven alterations to mouse hypothalamic agouti-related protein (AgRP) mRNA levels was examined. Insulin and leptin increase mTORC1 activity in a phosphoinositide-3-kinase (PI3K)- and protein kinase B (PKB)-dependent manner, compared to vehicle controls, whereas increasing AMPK activity inhibits mTORC1 activity and blocks the actions of the anorexigenic hormones. Ghrelin mediates an AMPK-dependent decrease in mTORC1 activity and increases hypothalamic AgRP mRNA levels, the latter effect being prevented by insulin in an mTORC1-dependent manner. In conclusion, mTORC1 acts as an integration node in hypothalamic neurons for hormone-derived PI3K and AMPK signalling and mediates at least part of the assimilated output of anorexigenic and orexigenic hormone actions in the hypothalamus.
1
Ghrelin decreases hypothalamic mTORC1 activity through AMPK activation and increases agouti-related protein mRNA expression.
2
Increased AMPK activity inhibits mTORC1 activity and blocks insulin- and leptin-induced mTORC1 activation.
3
Insulin and leptin increase hypothalamic mTORC1 activity through phosphoinositide-3-kinase and protein kinase B signaling.
4
Insulin prevents ghrelin-induced AgRP mRNA elevation through an mTORC1-dependent mechanism.
5
mTORC1 functions as an integration node linking hormone-derived PI3K and AMPK signals to hypothalamic appetite regulation.

Mouse hypothalamic GT1-7 cells and their AgRP-expressing hypothalamic neuronal signaling system

The interplay of insulin-, leptin-, and ghrelin-regulated AMPK–mTORC1 signaling and its control of hypothalamic AgRP mRNA expression

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2012-03-28
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Kenneth R. Watterson
Dawn Bestow
Jennifer Gallagher
D. Lee Hamilton
Fiona Ashford
Paul J. Meakin
Michael L.J. Ashford
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