Carboxylation of Osteocalcin Affects Its Association With Metabolic Parameters in Healthy Children

OBJECTIVE: Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC (cOC), increases adiponectin and insulin secretion. It is unclear if carboxylation of OC affects its association with metabolic paramet...

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Published in:Diabetes care Vol. 33; no. 3; pp. 661 - 663
Main Authors: Prats-Puig, Anna, Mas-Parareda, Marta, Riera-Pérez, Elena, González-Forcadell, Dolors, Mier, Concepció, Mallol-Guisset, Montserrat, Díaz, Marta, Bassols, Judit, de Zegher, Francis, Ibáñez, Lourdes, López-Bermejo, Abel
Format: Journal Article
Language:English
Published: Alexandria, VA American Diabetes Association 01-03-2010
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Abstract OBJECTIVE: Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC (cOC), increases adiponectin and insulin secretion. It is unclear if carboxylation of OC affects its association with metabolic parameters in humans. RESEARCH DESIGN AND METHODS: The associations between ucOC, cOC, total and high-molecular-weight (HMW) adiponectin, and insulin secretion (homeostasis model assessment [HOMA]-β) were investigated in a population-based sample of healthy prepubertal children (n = 103; 49 boys and 54 girls). RESULTS: Weight-dependent associations were observed between the different forms of OC and metabolic parameters. Higher cOC was related to lower HMW adiponectin (with a stronger association in leaner children; P < 0.001). Higher ucOC-to-cOC ratio was associated with higher HOMA-β (P < 0.01) in leaner children and associated with higher HMW adiponectin (P < 0.001) in heavier children. CONCLUSIONS: In a weight-dependent manner, cOC and the proportion of ucOC are differentially related to HMW adiponectin and insulin secretion in healthy children.
AbstractList OBJECTIVE Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC (cOC), increases adiponectin and insulin secretion. It is unclear if carboxylation of OC affects its association with metabolic parameters in humans. RESEARCH DESIGN AND METHODS The associations between ucOC, cOC, total and high-molecular-weight (HMW) adiponectin, and insulin secretion (homeostasis model assessment [HOMA]-beta) were investigated in a population-based sample of healthy prepubertal children (n = 103; 49 boys and 54 girls). RESULTS Weight-dependent associations were observed between the different forms of OC and metabolic parameters. Higher cOC was related to lower HMW adiponectin (with a stronger association in leaner children; P < 0.001). Higher ucOC-to-cOC ratio was associated with higher HOMA-beta (P < 0.01) in leaner children and associated with higher HMW adiponectin (P < 0.001) in heavier children. CONCLUSIONS In a weight-dependent manner, cOC and the proportion of ucOC are differentially related to HMW adiponectin and insulin secretion in healthy children.
Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC (cOC), increases adiponectin and insulin secretion. It is unclear if carboxylation of OC affects its association with metabolic parameters in humans. The associations between ucOC, cOC, total and high-molecular-weight (HMW) adiponectin, and insulin secretion (homeostasis model assessment [HOMA]-β) were investigated in a population-based sample of healthy prepubertal children (n = 103; 49 boys and 54 girls). Weight-dependent associations were observed between the different forms of OC and metabolic parameters. Higher cOC was related to lower HMW adiponectin (with a stronger association in leaner children; P < 0.001). Higher ucOC-to-cOC ratio was associated with higher HOMA-β (P < 0.01) in leaner children and associated with higher HMW adiponectin (P < 0.001) in heavier children. In a weight-dependent manner, cOC and the proportion of ucOC are differentially related to HMW adiponectin and insulin secretion in healthy children.
OBJECTIVE: Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC (cOC), increases adiponectin and insulin secretion. It is unclear if carboxylation of OC affects its association with metabolic parameters in humans. RESEARCH DESIGN AND METHODS: The associations between ucOC, cOC, total and high-molecular-weight (HMW) adiponectin, and insulin secretion (homeostasis model assessment [HOMA]-β) were investigated in a population-based sample of healthy prepubertal children (n = 103; 49 boys and 54 girls). RESULTS: Weight-dependent associations were observed between the different forms of OC and metabolic parameters. Higher cOC was related to lower HMW adiponectin (with a stronger association in leaner children; P < 0.001). Higher ucOC-to-cOC ratio was associated with higher HOMA-β (P < 0.01) in leaner children and associated with higher HMW adiponectin (P < 0.001) in heavier children. CONCLUSIONS: In a weight-dependent manner, cOC and the proportion of ucOC are differentially related to HMW adiponectin and insulin secretion in healthy children.
Audience Professional
Author Mallol-Guisset, Montserrat
López-Bermejo, Abel
Prats-Puig, Anna
González-Forcadell, Dolors
Díaz, Marta
Bassols, Judit
Mier, Concepció
de Zegher, Francis
Ibáñez, Lourdes
Mas-Parareda, Marta
Riera-Pérez, Elena
Author_xml – sequence: 1
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  fullname: Riera-Pérez, Elena
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  fullname: González-Forcadell, Dolors
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  fullname: Mier, Concepció
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  fullname: Mallol-Guisset, Montserrat
– sequence: 7
  fullname: Díaz, Marta
– sequence: 8
  fullname: Bassols, Judit
– sequence: 9
  fullname: de Zegher, Francis
– sequence: 10
  fullname: Ibáñez, Lourdes
– sequence: 11
  fullname: López-Bermejo, Abel
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ContentType Journal Article
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COPYRIGHT 2010 American Diabetes Association
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2010 by the American Diabetes Association. 2010
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Issue 3
Keywords Human
Osteocalcin
Association
Nutrition
Carboxylation
Metabolic diseases
Metabolism
Child
Endocrinology
Language English
License CC BY 4.0
Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
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Snippet OBJECTIVE: Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not...
OBJECTIVE Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not...
OBJECTIVE--Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not...
Osteocalcin (OC), a bone-derived protein, was recently shown to regulate metabolic pathways in mice. Undercarboxylated OC (ucOC), but not carboxylated OC...
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SubjectTerms Adiponectin - chemistry
Adiponectin - metabolism
Analysis
Biological and medical sciences
Biomarkers - metabolism
Biomedical research
Body Weight - physiology
Carboxyl and Carbamoyl Transferases - metabolism
Child
Child, Preschool
Children
Diabetes. Impaired glucose tolerance
Endocrine pancreas. Apud cells (diseases)
Endocrinopathies
Female
Health
Homeostasis - physiology
Humans
Insulin Resistance - physiology
Male
Medical sciences
Metabolic diseases
Metabolic disorders
Metabolism
Metabolism - physiology
Miscellaneous
Molecular Weight
Obesity in children
Original Research
Osteocalcin - chemistry
Osteocalcin - metabolism
Osteocalcin - physiology
Protein Processing, Post-Translational - physiology
Public health. Hygiene
Public health. Hygiene-occupational medicine
Studies
Title Carboxylation of Osteocalcin Affects Its Association With Metabolic Parameters in Healthy Children
URI https://www.ncbi.nlm.nih.gov/pubmed/20009098
https://www.proquest.com/docview/223040064
https://search.proquest.com/docview/733281468
https://pubmed.ncbi.nlm.nih.gov/PMC2827527
Volume 33
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