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Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density

Strong relationships have been found between appendicular lean mass (ALM) and bone mineral density (BMD). It may be due to a shared genetic basis, termed pleiotropy. By leveraging the pleiotropy with BMD, the aim of this study was to detect more potential genetic variants for ALM. Using the conditio...

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Autores principales: Peng, Cheng, Liu, Feng, Su, Kuan-Jui, Lin, Xu, Song, Yu-Qian, Shen, Jie, Hu, Shi-Di, Chen, Qiao-Cong, Yuan, Hui-Hui, Li, Wen-Xi, Zeng, Chun-Ping, Deng, Hong-Wen, Lou, Hui-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056257/
https://www.ncbi.nlm.nih.gov/pubmed/33889153
http://dx.doi.org/10.3389/fimmu.2021.643894
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author Peng, Cheng
Liu, Feng
Su, Kuan-Jui
Lin, Xu
Song, Yu-Qian
Shen, Jie
Hu, Shi-Di
Chen, Qiao-Cong
Yuan, Hui-Hui
Li, Wen-Xi
Zeng, Chun-Ping
Deng, Hong-Wen
Lou, Hui-Ling
author_facet Peng, Cheng
Liu, Feng
Su, Kuan-Jui
Lin, Xu
Song, Yu-Qian
Shen, Jie
Hu, Shi-Di
Chen, Qiao-Cong
Yuan, Hui-Hui
Li, Wen-Xi
Zeng, Chun-Ping
Deng, Hong-Wen
Lou, Hui-Ling
author_sort Peng, Cheng
collection PubMed
description Strong relationships have been found between appendicular lean mass (ALM) and bone mineral density (BMD). It may be due to a shared genetic basis, termed pleiotropy. By leveraging the pleiotropy with BMD, the aim of this study was to detect more potential genetic variants for ALM. Using the conditional false discovery rate (cFDR) methodology, a combined analysis of the summary statistics of two large independent genome wide association studies (GWAS) of ALM (n = 73,420) and BMD (n = 10,414) was conducted. Strong pleiotropic enrichment and 26 novel potential pleiotropic SNPs were found for ALM and BMD. We identified 156 SNPs for ALM (cFDR <0.05), of which 74 were replicates of previous GWASs and 82 were novel SNPs potentially-associated with ALM. Eleven genes annotated by 31 novel SNPs (13 pleiotropic and 18 ALM specific) were partially validated in a gene expression assay. Functional enrichment analysis indicated that genes corresponding to the novel potential SNPs were enriched in GO terms and/or KEGG pathways that played important roles in muscle development and/or BMD metabolism (adjP <0.05). In protein–protein interaction analysis, rich interactions were demonstrated among the proteins produced by the corresponding genes. In conclusion, the present study, as in other recent studies we have conducted, demonstrated superior efficiency and reliability of the cFDR methodology for enhanced detection of trait-associated genetic variants. Our findings shed novel insight into the genetic variability of ALM in addition to the shared genetic basis underlying ALM and BMD.
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spelling pubmed-80562572021-04-21 Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density Peng, Cheng Liu, Feng Su, Kuan-Jui Lin, Xu Song, Yu-Qian Shen, Jie Hu, Shi-Di Chen, Qiao-Cong Yuan, Hui-Hui Li, Wen-Xi Zeng, Chun-Ping Deng, Hong-Wen Lou, Hui-Ling Front Immunol Immunology Strong relationships have been found between appendicular lean mass (ALM) and bone mineral density (BMD). It may be due to a shared genetic basis, termed pleiotropy. By leveraging the pleiotropy with BMD, the aim of this study was to detect more potential genetic variants for ALM. Using the conditional false discovery rate (cFDR) methodology, a combined analysis of the summary statistics of two large independent genome wide association studies (GWAS) of ALM (n = 73,420) and BMD (n = 10,414) was conducted. Strong pleiotropic enrichment and 26 novel potential pleiotropic SNPs were found for ALM and BMD. We identified 156 SNPs for ALM (cFDR <0.05), of which 74 were replicates of previous GWASs and 82 were novel SNPs potentially-associated with ALM. Eleven genes annotated by 31 novel SNPs (13 pleiotropic and 18 ALM specific) were partially validated in a gene expression assay. Functional enrichment analysis indicated that genes corresponding to the novel potential SNPs were enriched in GO terms and/or KEGG pathways that played important roles in muscle development and/or BMD metabolism (adjP <0.05). In protein–protein interaction analysis, rich interactions were demonstrated among the proteins produced by the corresponding genes. In conclusion, the present study, as in other recent studies we have conducted, demonstrated superior efficiency and reliability of the cFDR methodology for enhanced detection of trait-associated genetic variants. Our findings shed novel insight into the genetic variability of ALM in addition to the shared genetic basis underlying ALM and BMD. Frontiers Media S.A. 2021-04-06 /pmc/articles/PMC8056257/ /pubmed/33889153 http://dx.doi.org/10.3389/fimmu.2021.643894 Text en Copyright © 2021 Peng, Liu, Su, Lin, Song, Shen, Hu, Chen, Yuan, Li, Zeng, Deng and Lou 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 Immunology
Peng, Cheng
Liu, Feng
Su, Kuan-Jui
Lin, Xu
Song, Yu-Qian
Shen, Jie
Hu, Shi-Di
Chen, Qiao-Cong
Yuan, Hui-Hui
Li, Wen-Xi
Zeng, Chun-Ping
Deng, Hong-Wen
Lou, Hui-Ling
Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title_full Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title_fullStr Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title_full_unstemmed Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title_short Enhanced Identification of Novel Potential Variants for Appendicular Lean Mass by Leveraging Pleiotropy With Bone Mineral Density
title_sort enhanced identification of novel potential variants for appendicular lean mass by leveraging pleiotropy with bone mineral density
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8056257/
https://www.ncbi.nlm.nih.gov/pubmed/33889153
http://dx.doi.org/10.3389/fimmu.2021.643894
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