LRP1 regulates food intake and energy balance in GABAergic neurons independently of leptin action

Author:

Kang Min-Cheol12,Seo Ji A13,Lee Hyon14,Uner Aykut1,Yang Won-Mo1,Cruz Rodrigues Kellen Cristina da1,Kim Hyun Jeong1,Li Wendy1,Campbell John N.5,Dagon Yossi1,Kim Young-Bum1ORCID

Affiliation:

1. Department of Medicine, Division of Endocrinology, Diabetes, and Metabolism, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts

2. Research Group of Food Processing, Korea Food Research Institute, Jeollabuk-do, South Korea

3. Department of Internal Medicine, Division of Endocrinology, Korea University College of Medicine, Seoul, South Korea

4. Department of Neurology, Gachon University Gil Medical Center, Incheon, South Korea

5. Department of Biology, University of Virginia, Charlottesville, Virginia

Abstract

Low-density lipoprotein receptor-related protein 1 (LRP1) is a member of LDL receptor family that plays a key role in systemic glucose and lipid homeostasis. LRP1 also regulates energy balance in the hypothalamus by mediating leptin’s anorexigenic action, although the underlying neurocircuitry involved is still unclear. Because GABAergic neurons are a major mediator of hypothalamic leptin action, we studied the role of GABAergic LRP1 in energy balance and leptin action using mice lacking LRP1 in Vgat- or AgRP-expressing neurons (Vgat-Cre; LRP1 loxP/loxP or AgRP-Cre; LRP1 loxP/loxP). Here, we show that LRP1 deficiency in GABAergic neurons results in severe obesity in male and female mice fed a normal-chow diet. This effect is most likely due to increased food intake and decreased energy expenditure and locomotor activity. Increased adiposity in GABAergic neuron-specific LRP1-deficient mice is accompanied by hyperleptinemia and hyperinsulinemia. Insulin resistance and glucose intolerance in these mice are occurred without change in body weight. Importantly, LRP1 in GABAergic neurons is not required for leptin action, as evidenced by normal leptin’s anorexigenic action and leptin-induced hypothalamic Stat3 phosphorylation. In contrast, LRP1 deficiency in AgRP neurons has no effect on adiposity and caloric intake. In conclusion, our data identify GABAergic neurons as a key neurocircuitry that underpins LRP1-dependent regulation of systemic energy balance and body-weight homeostasis. We further find that the GABAergic LRP1 signaling pathway modulates food intake and energy expenditure independently of leptin signaling and AgRP neurons.

Funder

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

National Research Foundation of Korea

Fundação de Amparo à Pesquisa do Estado de São Paulo

American Diabetes Association Research Foundation

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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