The dietary regulation of LEAP2 depends on meal composition in mice

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Standard

The dietary regulation of LEAP2 depends on meal composition in mice. / Gradel, Anna Katrina Jogvansdottir; Holm, Stephanie K. K.; Byberg, Sarah; Merkestein, Myrte; Hogendorf, Wouter Frederik Johan; Lund, Mari Lilith; Buijink, Jesse Arnold; Damgaard, Jesper; Lykkesfeldt, Jens; Holst, Birgitte.

I: FASEB Journal, Bind 37, Nr. 6, 22923, 2023.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Gradel, AKJ, Holm, SKK, Byberg, S, Merkestein, M, Hogendorf, WFJ, Lund, ML, Buijink, JA, Damgaard, J, Lykkesfeldt, J & Holst, B 2023, 'The dietary regulation of LEAP2 depends on meal composition in mice', FASEB Journal, bind 37, nr. 6, 22923. https://doi.org/10.1096/fj.202201828R

APA

Gradel, A. K. J., Holm, S. K. K., Byberg, S., Merkestein, M., Hogendorf, W. F. J., Lund, M. L., Buijink, J. A., Damgaard, J., Lykkesfeldt, J., & Holst, B. (2023). The dietary regulation of LEAP2 depends on meal composition in mice. FASEB Journal, 37(6), [22923]. https://doi.org/10.1096/fj.202201828R

Vancouver

Gradel AKJ, Holm SKK, Byberg S, Merkestein M, Hogendorf WFJ, Lund ML o.a. The dietary regulation of LEAP2 depends on meal composition in mice. FASEB Journal. 2023;37(6). 22923. https://doi.org/10.1096/fj.202201828R

Author

Gradel, Anna Katrina Jogvansdottir ; Holm, Stephanie K. K. ; Byberg, Sarah ; Merkestein, Myrte ; Hogendorf, Wouter Frederik Johan ; Lund, Mari Lilith ; Buijink, Jesse Arnold ; Damgaard, Jesper ; Lykkesfeldt, Jens ; Holst, Birgitte. / The dietary regulation of LEAP2 depends on meal composition in mice. I: FASEB Journal. 2023 ; Bind 37, Nr. 6.

Bibtex

@article{d993b44d73544ddc9178ee3e7c09ab4a,
title = "The dietary regulation of LEAP2 depends on meal composition in mice",
abstract = "Ghrelin represents a key hormone regulating energy balance. Upon activation of the growth hormone secretagogue receptor (GHSR), ghrelin increases blood glucose levels, food intake, and promotes weight gain. The liver-expressed antimicrobial peptide 2 (LEAP2) acts as an endogenous antagonist of the GHSR. While the regulation of LEAP2 and its effect on the GHSR likely occur in an opposite pattern to that of ghrelin, the dietary regulation of LEAP2 remains to be described. We, therefore, examined the regulation of LEAP2 by different acute meal challenges (glucose, mixed meal, olive, lard, and fish oil) and diets (chow vs. high-fat) in C57BL/6 male mice. In addition, the effect of specific fatty acids (oleic, docosahexaenoic, and linoleic acid) on LEAP2 was assessed in murine intestinal organoids. While only mixed meal increased liver Leap2 expression, all meal challenges except fish oil increased jejunal Leap2 expression compared to water. Leap2 expression correlated with levels of hepatic glycogen and jejunal lipids. Lipid versus water dosing increased LEAP2 levels in the systemic circulation and portal vein where fish oil was associated with the smallest increase. In line with this, oleic acid, but not docosahexaenoic acid increased Leap2 expression in intestinal organoids. Feeding mice with high-fat versus chow diet not only increased plasma LEAP2 levels, but also the increment in plasma LEAP2 upon dosing with olive oil versus water. Taken together, these results show that LEAP2 is regulated by meal ingestion in both the small intestine and the liver according to the meal/diet of interest and local energy stores.",
keywords = "dietary regulation, fatty acids, ghrelin, liver-expressed antimicrobial peptide 2, SREBP1, PLASMA GHRELIN LEVELS, CIRCULATING GHRELIN, GLUCOSE",
author = "Gradel, {Anna Katrina Jogvansdottir} and Holm, {Stephanie K. K.} and Sarah Byberg and Myrte Merkestein and Hogendorf, {Wouter Frederik Johan} and Lund, {Mari Lilith} and Buijink, {Jesse Arnold} and Jesper Damgaard and Jens Lykkesfeldt and Birgitte Holst",
year = "2023",
doi = "10.1096/fj.202201828R",
language = "English",
volume = "37",
journal = "F A S E B Journal",
issn = "0892-6638",
publisher = "Federation of American Societies for Experimental Biology",
number = "6",

}

RIS

TY - JOUR

T1 - The dietary regulation of LEAP2 depends on meal composition in mice

AU - Gradel, Anna Katrina Jogvansdottir

AU - Holm, Stephanie K. K.

AU - Byberg, Sarah

AU - Merkestein, Myrte

AU - Hogendorf, Wouter Frederik Johan

AU - Lund, Mari Lilith

AU - Buijink, Jesse Arnold

AU - Damgaard, Jesper

AU - Lykkesfeldt, Jens

AU - Holst, Birgitte

PY - 2023

Y1 - 2023

N2 - Ghrelin represents a key hormone regulating energy balance. Upon activation of the growth hormone secretagogue receptor (GHSR), ghrelin increases blood glucose levels, food intake, and promotes weight gain. The liver-expressed antimicrobial peptide 2 (LEAP2) acts as an endogenous antagonist of the GHSR. While the regulation of LEAP2 and its effect on the GHSR likely occur in an opposite pattern to that of ghrelin, the dietary regulation of LEAP2 remains to be described. We, therefore, examined the regulation of LEAP2 by different acute meal challenges (glucose, mixed meal, olive, lard, and fish oil) and diets (chow vs. high-fat) in C57BL/6 male mice. In addition, the effect of specific fatty acids (oleic, docosahexaenoic, and linoleic acid) on LEAP2 was assessed in murine intestinal organoids. While only mixed meal increased liver Leap2 expression, all meal challenges except fish oil increased jejunal Leap2 expression compared to water. Leap2 expression correlated with levels of hepatic glycogen and jejunal lipids. Lipid versus water dosing increased LEAP2 levels in the systemic circulation and portal vein where fish oil was associated with the smallest increase. In line with this, oleic acid, but not docosahexaenoic acid increased Leap2 expression in intestinal organoids. Feeding mice with high-fat versus chow diet not only increased plasma LEAP2 levels, but also the increment in plasma LEAP2 upon dosing with olive oil versus water. Taken together, these results show that LEAP2 is regulated by meal ingestion in both the small intestine and the liver according to the meal/diet of interest and local energy stores.

AB - Ghrelin represents a key hormone regulating energy balance. Upon activation of the growth hormone secretagogue receptor (GHSR), ghrelin increases blood glucose levels, food intake, and promotes weight gain. The liver-expressed antimicrobial peptide 2 (LEAP2) acts as an endogenous antagonist of the GHSR. While the regulation of LEAP2 and its effect on the GHSR likely occur in an opposite pattern to that of ghrelin, the dietary regulation of LEAP2 remains to be described. We, therefore, examined the regulation of LEAP2 by different acute meal challenges (glucose, mixed meal, olive, lard, and fish oil) and diets (chow vs. high-fat) in C57BL/6 male mice. In addition, the effect of specific fatty acids (oleic, docosahexaenoic, and linoleic acid) on LEAP2 was assessed in murine intestinal organoids. While only mixed meal increased liver Leap2 expression, all meal challenges except fish oil increased jejunal Leap2 expression compared to water. Leap2 expression correlated with levels of hepatic glycogen and jejunal lipids. Lipid versus water dosing increased LEAP2 levels in the systemic circulation and portal vein where fish oil was associated with the smallest increase. In line with this, oleic acid, but not docosahexaenoic acid increased Leap2 expression in intestinal organoids. Feeding mice with high-fat versus chow diet not only increased plasma LEAP2 levels, but also the increment in plasma LEAP2 upon dosing with olive oil versus water. Taken together, these results show that LEAP2 is regulated by meal ingestion in both the small intestine and the liver according to the meal/diet of interest and local energy stores.

KW - dietary regulation

KW - fatty acids

KW - ghrelin

KW - liver-expressed antimicrobial peptide 2

KW - SREBP1

KW - PLASMA GHRELIN LEVELS

KW - CIRCULATING GHRELIN

KW - GLUCOSE

U2 - 10.1096/fj.202201828R

DO - 10.1096/fj.202201828R

M3 - Journal article

C2 - 37104087

VL - 37

JO - F A S E B Journal

JF - F A S E B Journal

SN - 0892-6638

IS - 6

M1 - 22923

ER -

ID: 347000581