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An osteocalcin-deficient mouse strain without endocrine abnormalities

Osteocalcin (OCN), the most abundant noncollagenous protein in the bone matrix, is reported to be a bone-derived endocrine hormone with wide-ranging effects on many aspects of physiology, including glucose metabolism and male fertility. Many of these observations were made using an OCN-deficient mou...

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Autores principales: Diegel, Cassandra R., Hann, Steven, Ayturk, Ugur M., Hu, Jennifer C. W., Lim, Kyung-eun, Droscha, Casey J., Madaj, Zachary B., Foxa, Gabrielle E., Izaguirre, Isaac, Transgenics Core, VAI Vivarium and, Paracha, Noorulain, Pidhaynyy, Bohdan, Dowd, Terry L., Robling, Alexander G., Warman, Matthew L., Williams, Bart O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7255615/
https://www.ncbi.nlm.nih.gov/pubmed/32463812
http://dx.doi.org/10.1371/journal.pgen.1008361
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author Diegel, Cassandra R.
Hann, Steven
Ayturk, Ugur M.
Hu, Jennifer C. W.
Lim, Kyung-eun
Droscha, Casey J.
Madaj, Zachary B.
Foxa, Gabrielle E.
Izaguirre, Isaac
Transgenics Core, VAI Vivarium and
Paracha, Noorulain
Pidhaynyy, Bohdan
Dowd, Terry L.
Robling, Alexander G.
Warman, Matthew L.
Williams, Bart O.
author_facet Diegel, Cassandra R.
Hann, Steven
Ayturk, Ugur M.
Hu, Jennifer C. W.
Lim, Kyung-eun
Droscha, Casey J.
Madaj, Zachary B.
Foxa, Gabrielle E.
Izaguirre, Isaac
Transgenics Core, VAI Vivarium and
Paracha, Noorulain
Pidhaynyy, Bohdan
Dowd, Terry L.
Robling, Alexander G.
Warman, Matthew L.
Williams, Bart O.
author_sort Diegel, Cassandra R.
collection PubMed
description Osteocalcin (OCN), the most abundant noncollagenous protein in the bone matrix, is reported to be a bone-derived endocrine hormone with wide-ranging effects on many aspects of physiology, including glucose metabolism and male fertility. Many of these observations were made using an OCN-deficient mouse allele (Osc(–)) in which the 2 OCN-encoding genes in mice, Bglap and Bglap2, were deleted in ES cells by homologous recombination. Here we describe mice with a new Bglap and Bglap2 double-knockout (dko) allele (Bglap/2(p.Pro25fs17Ter)) that was generated by CRISPR/Cas9-mediated gene editing. Mice homozygous for this new allele do not express full-length Bglap or Bglap2 mRNA and have no immunodetectable OCN in their serum. FTIR imaging of cortical bone in these homozygous knockout animals finds alterations in the collagen maturity and carbonate to phosphate ratio in the cortical bone, compared with wild-type littermates. However, μCT and 3-point bending tests do not find differences from wild-type littermates with respect to bone mass and strength. In contrast to the previously reported OCN-deficient mice with the Osc(−)allele, serum glucose levels and male fertility in the OCN-deficient mice with the Bglap/2(pPro25fs17Ter) allele did not have significant differences from wild-type littermates. We cannot explain the absence of endocrine effects in mice with this new knockout allele. Possible explanations include the effects of each mutated allele on the transcription of neighboring genes, or differences in genetic background and environment. So that our findings can be confirmed and extended by other interested investigators, we are donating this new Bglap and Bglap2 double-knockout strain to the Jackson Laboratories for academic distribution.
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spelling pubmed-72556152020-06-08 An osteocalcin-deficient mouse strain without endocrine abnormalities Diegel, Cassandra R. Hann, Steven Ayturk, Ugur M. Hu, Jennifer C. W. Lim, Kyung-eun Droscha, Casey J. Madaj, Zachary B. Foxa, Gabrielle E. Izaguirre, Isaac Transgenics Core, VAI Vivarium and Paracha, Noorulain Pidhaynyy, Bohdan Dowd, Terry L. Robling, Alexander G. Warman, Matthew L. Williams, Bart O. PLoS Genet Research Article Osteocalcin (OCN), the most abundant noncollagenous protein in the bone matrix, is reported to be a bone-derived endocrine hormone with wide-ranging effects on many aspects of physiology, including glucose metabolism and male fertility. Many of these observations were made using an OCN-deficient mouse allele (Osc(–)) in which the 2 OCN-encoding genes in mice, Bglap and Bglap2, were deleted in ES cells by homologous recombination. Here we describe mice with a new Bglap and Bglap2 double-knockout (dko) allele (Bglap/2(p.Pro25fs17Ter)) that was generated by CRISPR/Cas9-mediated gene editing. Mice homozygous for this new allele do not express full-length Bglap or Bglap2 mRNA and have no immunodetectable OCN in their serum. FTIR imaging of cortical bone in these homozygous knockout animals finds alterations in the collagen maturity and carbonate to phosphate ratio in the cortical bone, compared with wild-type littermates. However, μCT and 3-point bending tests do not find differences from wild-type littermates with respect to bone mass and strength. In contrast to the previously reported OCN-deficient mice with the Osc(−)allele, serum glucose levels and male fertility in the OCN-deficient mice with the Bglap/2(pPro25fs17Ter) allele did not have significant differences from wild-type littermates. We cannot explain the absence of endocrine effects in mice with this new knockout allele. Possible explanations include the effects of each mutated allele on the transcription of neighboring genes, or differences in genetic background and environment. So that our findings can be confirmed and extended by other interested investigators, we are donating this new Bglap and Bglap2 double-knockout strain to the Jackson Laboratories for academic distribution. Public Library of Science 2020-05-28 /pmc/articles/PMC7255615/ /pubmed/32463812 http://dx.doi.org/10.1371/journal.pgen.1008361 Text en © 2020 Diegel et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Diegel, Cassandra R.
Hann, Steven
Ayturk, Ugur M.
Hu, Jennifer C. W.
Lim, Kyung-eun
Droscha, Casey J.
Madaj, Zachary B.
Foxa, Gabrielle E.
Izaguirre, Isaac
Transgenics Core, VAI Vivarium and
Paracha, Noorulain
Pidhaynyy, Bohdan
Dowd, Terry L.
Robling, Alexander G.
Warman, Matthew L.
Williams, Bart O.
An osteocalcin-deficient mouse strain without endocrine abnormalities
title An osteocalcin-deficient mouse strain without endocrine abnormalities
title_full An osteocalcin-deficient mouse strain without endocrine abnormalities
title_fullStr An osteocalcin-deficient mouse strain without endocrine abnormalities
title_full_unstemmed An osteocalcin-deficient mouse strain without endocrine abnormalities
title_short An osteocalcin-deficient mouse strain without endocrine abnormalities
title_sort osteocalcin-deficient mouse strain without endocrine abnormalities
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7255615/
https://www.ncbi.nlm.nih.gov/pubmed/32463812
http://dx.doi.org/10.1371/journal.pgen.1008361
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