Cargando…
A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis
Novel anabolic drug targets are needed to treat osteoporosis. Having established a large national cohort with unexplained high bone mass (HBM), we aimed to identify a novel monogenic cause of HBM and provide insight into a regulatory pathway potentially amenable to therapeutic intervention. We inves...
Autores principales: | , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley & Sons, Inc.
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004081/ https://www.ncbi.nlm.nih.gov/pubmed/31525280 http://dx.doi.org/10.1002/jbmr.3875 |
_version_ | 1783494657478492160 |
---|---|
author | Gregson, Celia L Bergen, Dylan J. M. Leo, Paul Sessions, Richard B Wheeler, Lawrie Hartley, April Youlten, Scott Croucher, Peter I McInerney‐Leo, Aideen M Fraser, William Tang, Jonathan CY Anderson, Lisa Marshall, Mhairi Sergot, Leon Paternoster, Lavinia Davey Smith, George Brown, Matthew A Hammond, Chrissy Kemp, John P Tobias, Jon H Duncan, Emma L |
author_facet | Gregson, Celia L Bergen, Dylan J. M. Leo, Paul Sessions, Richard B Wheeler, Lawrie Hartley, April Youlten, Scott Croucher, Peter I McInerney‐Leo, Aideen M Fraser, William Tang, Jonathan CY Anderson, Lisa Marshall, Mhairi Sergot, Leon Paternoster, Lavinia Davey Smith, George Brown, Matthew A Hammond, Chrissy Kemp, John P Tobias, Jon H Duncan, Emma L |
author_sort | Gregson, Celia L |
collection | PubMed |
description | Novel anabolic drug targets are needed to treat osteoporosis. Having established a large national cohort with unexplained high bone mass (HBM), we aimed to identify a novel monogenic cause of HBM and provide insight into a regulatory pathway potentially amenable to therapeutic intervention. We investigated a pedigree with unexplained HBM in whom previous sequencing had excluded known causes of monogenic HBM. Whole exome sequencing identified a rare (minor allele frequency 0.0023), highly evolutionarily conserved missense mutation in SMAD9 (c.65T>C, p.Leu22Pro) segregating with HBM in this autosomal dominant family. The same mutation was identified in another two unrelated individuals both with HBM. In silico protein modeling predicts the mutation severely disrupts the MH1 DNA‐binding domain of SMAD9. Affected individuals have bone mineral density (BMD) Z‐scores +3 to +5, mandible enlargement, a broad frame, torus palatinus/mandibularis, pes planus, increased shoe size, and a tendency to sink when swimming. Peripheral quantitative computed tomography (pQCT) measurement demonstrates increased trabecular volumetric BMD and increased cortical thickness conferring greater predicted bone strength; bone turnover markers are low/normal. Notably, fractures and nerve compression are not found. Both genome‐wide and gene‐based association testing involving estimated BMD measured at the heel in 362,924 white British subjects from the UK Biobank Study showed strong associations with SMAD9 (P(GWAS) = 6 × 10(−16); P(GENE) = 8 × 10(−17)). Furthermore, we found Smad9 to be highly expressed in both murine cortical bone–derived osteocytes and skeletal elements of zebrafish larvae. Our findings support SMAD9 as a novel HBM gene and a potential novel osteoanabolic target for osteoporosis therapeutics. SMAD9 is thought to inhibit bone morphogenetic protein (BMP)‐dependent target gene transcription to reduce osteoblast activity. Thus, we hypothesize SMAD9 c.65T>C is a loss‐of‐function mutation reducing BMP inhibition. Lowering SMAD9 as a potential novel anabolic mechanism for osteoporosis therapeutics warrants further investigation. © 2019 The Authors. Journal of Bone and Mineral Research published by American Society for Bone and Mineral Research. |
format | Online Article Text |
id | pubmed-7004081 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | John Wiley & Sons, Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-70040812020-02-11 A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis Gregson, Celia L Bergen, Dylan J. M. Leo, Paul Sessions, Richard B Wheeler, Lawrie Hartley, April Youlten, Scott Croucher, Peter I McInerney‐Leo, Aideen M Fraser, William Tang, Jonathan CY Anderson, Lisa Marshall, Mhairi Sergot, Leon Paternoster, Lavinia Davey Smith, George Brown, Matthew A Hammond, Chrissy Kemp, John P Tobias, Jon H Duncan, Emma L J Bone Miner Res Original Articles Novel anabolic drug targets are needed to treat osteoporosis. Having established a large national cohort with unexplained high bone mass (HBM), we aimed to identify a novel monogenic cause of HBM and provide insight into a regulatory pathway potentially amenable to therapeutic intervention. We investigated a pedigree with unexplained HBM in whom previous sequencing had excluded known causes of monogenic HBM. Whole exome sequencing identified a rare (minor allele frequency 0.0023), highly evolutionarily conserved missense mutation in SMAD9 (c.65T>C, p.Leu22Pro) segregating with HBM in this autosomal dominant family. The same mutation was identified in another two unrelated individuals both with HBM. In silico protein modeling predicts the mutation severely disrupts the MH1 DNA‐binding domain of SMAD9. Affected individuals have bone mineral density (BMD) Z‐scores +3 to +5, mandible enlargement, a broad frame, torus palatinus/mandibularis, pes planus, increased shoe size, and a tendency to sink when swimming. Peripheral quantitative computed tomography (pQCT) measurement demonstrates increased trabecular volumetric BMD and increased cortical thickness conferring greater predicted bone strength; bone turnover markers are low/normal. Notably, fractures and nerve compression are not found. Both genome‐wide and gene‐based association testing involving estimated BMD measured at the heel in 362,924 white British subjects from the UK Biobank Study showed strong associations with SMAD9 (P(GWAS) = 6 × 10(−16); P(GENE) = 8 × 10(−17)). Furthermore, we found Smad9 to be highly expressed in both murine cortical bone–derived osteocytes and skeletal elements of zebrafish larvae. Our findings support SMAD9 as a novel HBM gene and a potential novel osteoanabolic target for osteoporosis therapeutics. SMAD9 is thought to inhibit bone morphogenetic protein (BMP)‐dependent target gene transcription to reduce osteoblast activity. Thus, we hypothesize SMAD9 c.65T>C is a loss‐of‐function mutation reducing BMP inhibition. Lowering SMAD9 as a potential novel anabolic mechanism for osteoporosis therapeutics warrants further investigation. © 2019 The Authors. Journal of Bone and Mineral Research published by American Society for Bone and Mineral Research. John Wiley & Sons, Inc. 2019-11-14 2020-01 /pmc/articles/PMC7004081/ /pubmed/31525280 http://dx.doi.org/10.1002/jbmr.3875 Text en © 2019 The Authors. Journal of Bone and Mineral Research published by American Society for Bone and Mineral Research This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Articles Gregson, Celia L Bergen, Dylan J. M. Leo, Paul Sessions, Richard B Wheeler, Lawrie Hartley, April Youlten, Scott Croucher, Peter I McInerney‐Leo, Aideen M Fraser, William Tang, Jonathan CY Anderson, Lisa Marshall, Mhairi Sergot, Leon Paternoster, Lavinia Davey Smith, George Brown, Matthew A Hammond, Chrissy Kemp, John P Tobias, Jon H Duncan, Emma L A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title | A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title_full | A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title_fullStr | A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title_full_unstemmed | A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title_short | A Rare Mutation in SMAD9 Associated With High Bone Mass Identifies the SMAD‐Dependent BMP Signaling Pathway as a Potential Anabolic Target for Osteoporosis |
title_sort | rare mutation in smad9 associated with high bone mass identifies the smad‐dependent bmp signaling pathway as a potential anabolic target for osteoporosis |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7004081/ https://www.ncbi.nlm.nih.gov/pubmed/31525280 http://dx.doi.org/10.1002/jbmr.3875 |
work_keys_str_mv | AT gregsoncelial araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT bergendylanjm araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT leopaul araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT sessionsrichardb araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT wheelerlawrie araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT hartleyapril araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT youltenscott araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT croucherpeteri araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT mcinerneyleoaideenm araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT fraserwilliam araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT tangjonathancy araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT andersonlisa araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT marshallmhairi araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT sergotleon araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT paternosterlavinia araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT daveysmithgeorge araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT brownmatthewa araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT hammondchrissy araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT kempjohnp araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT tobiasjonh araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT duncanemmal araremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT gregsoncelial raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT bergendylanjm raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT leopaul raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT sessionsrichardb raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT wheelerlawrie raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT hartleyapril raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT youltenscott raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT croucherpeteri raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT mcinerneyleoaideenm raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT fraserwilliam raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT tangjonathancy raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT andersonlisa raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT marshallmhairi raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT sergotleon raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT paternosterlavinia raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT daveysmithgeorge raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT brownmatthewa raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT hammondchrissy raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT kempjohnp raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT tobiasjonh raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis AT duncanemmal raremutationinsmad9associatedwithhighbonemassidentifiesthesmaddependentbmpsignalingpathwayasapotentialanabolictargetforosteoporosis |