Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects

Vitamin K - is a fat-soluble vitamin which plays an important role in the metabolism of bone and connective tissue, maintenance blood clotting properties. Vitamin K is involved in carboxylation of glutamic acid residues in the polypeptide chains of 14 human proteins, providing them with the necessar...

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Κύριοι συγγραφείς: Yu В Pankratova, E A Pigarova, L K Dzeranova
Μορφή: Άρθρο
Γλώσσα:English
Έκδοση: Endocrinology Research Centre 2013-06-01
Σειρά:Ожирение и метаболизм
Θέματα:
Διαθέσιμο Online:https://www.omet-endojournals.ru/jour/article/view/4818
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author Yu В Pankratova
E A Pigarova
L K Dzeranova
author_facet Yu В Pankratova
E A Pigarova
L K Dzeranova
author_sort Yu В Pankratova
collection DOAJ
description Vitamin K - is a fat-soluble vitamin which plays an important role in the metabolism of bone and connective tissue, maintenance blood clotting properties. Vitamin K is involved in carboxylation of glutamic acid residues in the polypeptide chains of 14 human proteins, providing them with the necessary functional properties. Lack of vitamin K-dependent carboxylation of these proteins leads to changes in their biological activity. In this literature review we cover the mechanisms of vitamin K-dependent carboxylation and none bone actions of osteocalcin and matrix Gla-protein with different degrees of carboxylation.
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spelling doaj.art-a8f9e84b806e458fb97414f15356f6782024-09-11T16:17:48ZengEndocrinology Research CentreОжирение и метаболизм2071-87132306-55242013-06-01102111810.14341/2071-8713-48184776Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effectsYu В PankratovaE A PigarovaL K DzeranovaVitamin K - is a fat-soluble vitamin which plays an important role in the metabolism of bone and connective tissue, maintenance blood clotting properties. Vitamin K is involved in carboxylation of glutamic acid residues in the polypeptide chains of 14 human proteins, providing them with the necessary functional properties. Lack of vitamin K-dependent carboxylation of these proteins leads to changes in their biological activity. In this literature review we cover the mechanisms of vitamin K-dependent carboxylation and none bone actions of osteocalcin and matrix Gla-protein with different degrees of carboxylation.https://www.omet-endojournals.ru/jour/article/view/4818vitamin kcarboxylationosteocalcinmatrix gla-proteindiabetes mellitusimpaired glucose tolerancevascular calcification
spellingShingle Yu В Pankratova
E A Pigarova
L K Dzeranova
Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
Ожирение и метаболизм
vitamin k
carboxylation
osteocalcin
matrix gla-protein
diabetes mellitus
impaired glucose tolerance
vascular calcification
title Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
title_full Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
title_fullStr Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
title_full_unstemmed Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
title_short Vitamin K-dependent proteins: osteocalcin, matrix Gla-protein and extra osseous effects
title_sort vitamin k dependent proteins osteocalcin matrix gla protein and extra osseous effects
topic vitamin k
carboxylation
osteocalcin
matrix gla-protein
diabetes mellitus
impaired glucose tolerance
vascular calcification
url https://www.omet-endojournals.ru/jour/article/view/4818
work_keys_str_mv AT yuvpankratova vitaminkdependentproteinsosteocalcinmatrixglaproteinandextraosseouseffects
AT eapigarova vitaminkdependentproteinsosteocalcinmatrixglaproteinandextraosseouseffects
AT lkdzeranova vitaminkdependentproteinsosteocalcinmatrixglaproteinandextraosseouseffects