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Glucose in the hypothalamic paraventricular nucleus regulates GLP-1 release
Yue Ma, Risheka Ratnasabapathy, Ivan De Backer, Chioma Izzi-Engbeaya, Marie-Sophie Nguyen-Tu, Joyceline Cuenco, Ben Jones, Christopher D. John, Brian Y.H. Lam, Guy A. Rutter, Giles S.H. Yeo, Waljit S. Dhillo, James Gardiner
Yue Ma, Risheka Ratnasabapathy, Ivan De Backer, Chioma Izzi-Engbeaya, Marie-Sophie Nguyen-Tu, Joyceline Cuenco, Ben Jones, Christopher D. John, Brian Y.H. Lam, Guy A. Rutter, Giles S.H. Yeo, Waljit S. Dhillo, James Gardiner
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Research Article Endocrinology Neuroscience

Glucose in the hypothalamic paraventricular nucleus regulates GLP-1 release

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Abstract

Glucokinase (GK) is highly expressed in the hypothalamic paraventricular nucleus (PVN); however, its role is currently unknown. We found that GK in the PVN acts as part of a glucose-sensing mechanism within the PVN that regulates glucose homeostasis by controlling glucagon-like peptide 1 (GLP-1) release. GLP-1 is released from enteroendocrine L cells in response to oral glucose. Here we identify a brain mechanism critical to the release of GLP-1 in response to oral glucose. We show that increasing expression of GK or injection of glucose into the PVN increases GLP-1 release in response to oral glucose. On the contrary, decreasing expression of GK or injection of nonmetabolizable glucose into the PVN prevents GLP-1 release. Our results demonstrate that gluco-sensitive GK neurons in the PVN are critical to the response to oral glucose and subsequent release of GLP-1.

Authors

Yue Ma, Risheka Ratnasabapathy, Ivan De Backer, Chioma Izzi-Engbeaya, Marie-Sophie Nguyen-Tu, Joyceline Cuenco, Ben Jones, Christopher D. John, Brian Y.H. Lam, Guy A. Rutter, Giles S.H. Yeo, Waljit S. Dhillo, James Gardiner

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Figure 3

Effect of increased PVN GK activity during an ivGTT.

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Effect of increased PVN GK activity during an ivGTT.
Groups of adult mal...
Groups of adult male Wistar rats were injected with either vehicle (green circles) or 0.5 nmol CpdA (orange squares) into the PVN. They were then subjected to an ivGTT. (A) Plasma glucose during an ivGTT in vehicle-injected (green circles) and CpdA-injected (orange squares) rat. (B) Plasma insulin during an ivGTT in vehicle-injected (green circles) and CpdA-injected (orange squares) rats. (C) Plasma active GLP-1 during an ivGTT in vehicle-injected (green circles) and CpdA-injected (orange squares) rats. Data are shown as mean ± SEM; n = 9. Data were analyzed by 2-way ANOVA and post hoc Holm-Šídák.

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