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Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals

CONTEXT: The bone-derived adipokine lipocalin-2 is relevant for body weight regulation by stimulating the leptin-melanocortin pathway. OBJECTIVE: We aimed to (i) detect variants in the lipocalin-2 gene (LCN2) which are relevant for body weight regulation and/or anorexia nervosa (AN); (ii) describe a...

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Autores principales: Zheng, Yiran, Rajcsanyi, Luisa Sophie, Kowalczyk, Manuela, Giuranna, Johanna, Herpertz-Dahlmann, Beate, Seitz, Jochen, de Zwaan, Martina, Herzog, Wolfgang, Ehrlich, Stefan, Zipfel, Stephan, Giel, Katrin, Egberts, Karin, Burghardt, Roland, Föcker, Manuel, Al-Lahham, Saad, Hebebrand, Johannes, Fuhrer, Dagmar, Tan, Susanne, Zwanziger, Denise, Peters, Triinu, Hinney, Anke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10071025/
https://www.ncbi.nlm.nih.gov/pubmed/37025415
http://dx.doi.org/10.3389/fendo.2023.1137308
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author Zheng, Yiran
Rajcsanyi, Luisa Sophie
Kowalczyk, Manuela
Giuranna, Johanna
Herpertz-Dahlmann, Beate
Seitz, Jochen
de Zwaan, Martina
Herzog, Wolfgang
Ehrlich, Stefan
Zipfel, Stephan
Giel, Katrin
Egberts, Karin
Burghardt, Roland
Föcker, Manuel
Al-Lahham, Saad
Hebebrand, Johannes
Fuhrer, Dagmar
Tan, Susanne
Zwanziger, Denise
Peters, Triinu
Hinney, Anke
author_facet Zheng, Yiran
Rajcsanyi, Luisa Sophie
Kowalczyk, Manuela
Giuranna, Johanna
Herpertz-Dahlmann, Beate
Seitz, Jochen
de Zwaan, Martina
Herzog, Wolfgang
Ehrlich, Stefan
Zipfel, Stephan
Giel, Katrin
Egberts, Karin
Burghardt, Roland
Föcker, Manuel
Al-Lahham, Saad
Hebebrand, Johannes
Fuhrer, Dagmar
Tan, Susanne
Zwanziger, Denise
Peters, Triinu
Hinney, Anke
author_sort Zheng, Yiran
collection PubMed
description CONTEXT: The bone-derived adipokine lipocalin-2 is relevant for body weight regulation by stimulating the leptin-melanocortin pathway. OBJECTIVE: We aimed to (i) detect variants in the lipocalin-2 gene (LCN2) which are relevant for body weight regulation and/or anorexia nervosa (AN); (ii) describe and characterize the impact of LCN2 and MC4R variants on circulating lipocalin-2 level. METHODS: Sanger sequencing of the coding region of LCN2 in 284 children and adolescents with severe obesity or 287 patients with anorexia nervosa. In-silico analyses to evaluate functional implications of detected LCN2 variants. TaqMan assays for rare non-synonymous variants (NSVs) in additional independent study groups. Serum levels of lipocalin-2 were measured by ELISA in 35 females with NSVs in either LCN2 or MC4R, and 33 matched controls without NSVs in the two genes. RESULTS: Fourteen LCN2-variants (five NSVs) were detected. LCN2-p.Leu6Pro and p.Gly9Val located in the highly conserved signal peptide region may induce functional consequences. The secondary structure change of lipocalin-2 due to LCN2-p.Val89Ile may decrease solubility and results in a low lipocalin-2 level in a heterozygotes carrier (female recovered from AN). Lean individuals had lower lipocalin-2 levels compared to patients with obesity (p = 0.033). CONCLUSION: Lipocalin-2 levels are positively associated with body mass index (BMI). Single LCN2-variants might have a profound effect on lipocalin-2 levels.
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spelling pubmed-100710252023-04-05 Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals Zheng, Yiran Rajcsanyi, Luisa Sophie Kowalczyk, Manuela Giuranna, Johanna Herpertz-Dahlmann, Beate Seitz, Jochen de Zwaan, Martina Herzog, Wolfgang Ehrlich, Stefan Zipfel, Stephan Giel, Katrin Egberts, Karin Burghardt, Roland Föcker, Manuel Al-Lahham, Saad Hebebrand, Johannes Fuhrer, Dagmar Tan, Susanne Zwanziger, Denise Peters, Triinu Hinney, Anke Front Endocrinol (Lausanne) Endocrinology CONTEXT: The bone-derived adipokine lipocalin-2 is relevant for body weight regulation by stimulating the leptin-melanocortin pathway. OBJECTIVE: We aimed to (i) detect variants in the lipocalin-2 gene (LCN2) which are relevant for body weight regulation and/or anorexia nervosa (AN); (ii) describe and characterize the impact of LCN2 and MC4R variants on circulating lipocalin-2 level. METHODS: Sanger sequencing of the coding region of LCN2 in 284 children and adolescents with severe obesity or 287 patients with anorexia nervosa. In-silico analyses to evaluate functional implications of detected LCN2 variants. TaqMan assays for rare non-synonymous variants (NSVs) in additional independent study groups. Serum levels of lipocalin-2 were measured by ELISA in 35 females with NSVs in either LCN2 or MC4R, and 33 matched controls without NSVs in the two genes. RESULTS: Fourteen LCN2-variants (five NSVs) were detected. LCN2-p.Leu6Pro and p.Gly9Val located in the highly conserved signal peptide region may induce functional consequences. The secondary structure change of lipocalin-2 due to LCN2-p.Val89Ile may decrease solubility and results in a low lipocalin-2 level in a heterozygotes carrier (female recovered from AN). Lean individuals had lower lipocalin-2 levels compared to patients with obesity (p = 0.033). CONCLUSION: Lipocalin-2 levels are positively associated with body mass index (BMI). Single LCN2-variants might have a profound effect on lipocalin-2 levels. Frontiers Media S.A. 2023-03-21 /pmc/articles/PMC10071025/ /pubmed/37025415 http://dx.doi.org/10.3389/fendo.2023.1137308 Text en Copyright © 2023 Zheng, Rajcsanyi, Kowalczyk, Giuranna, Herpertz-Dahlmann, Seitz, de Zwaan, Herzog, Ehrlich, Zipfel, Giel, Egberts, Burghardt, Föcker, Al-Lahham, Hebebrand, Fuhrer, Tan, Zwanziger, Peters and Hinney https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Zheng, Yiran
Rajcsanyi, Luisa Sophie
Kowalczyk, Manuela
Giuranna, Johanna
Herpertz-Dahlmann, Beate
Seitz, Jochen
de Zwaan, Martina
Herzog, Wolfgang
Ehrlich, Stefan
Zipfel, Stephan
Giel, Katrin
Egberts, Karin
Burghardt, Roland
Föcker, Manuel
Al-Lahham, Saad
Hebebrand, Johannes
Fuhrer, Dagmar
Tan, Susanne
Zwanziger, Denise
Peters, Triinu
Hinney, Anke
Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title_full Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title_fullStr Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title_full_unstemmed Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title_short Lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
title_sort lipocalin 2 – mutation screen and serum levels in patients with anorexia nervosa or obesity and in lean individuals
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10071025/
https://www.ncbi.nlm.nih.gov/pubmed/37025415
http://dx.doi.org/10.3389/fendo.2023.1137308
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