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Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia

Low levels of high density lipoprotein-cholesterol (HDL-C) are associated with an elevated risk of arteriosclerotic coronary heart disease. Heritability of HDL-C levels is high. In this research discovery study, we used whole-exome sequencing to identify damaging gene variants that may play signific...

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Autores principales: Dong, Weilai, Wong, Karen H.Y., Liu, Youbin, Levy-Sakin, Michal, Hung, Wei-Chien, Li, Mo, Li, Boyang, Jin, Sheng Chih, Choi, Jungmin, Lopez-Giraldez, Francesc, Vaka, Dedeepya, Poon, Annie, Chu, Catherine, Lao, Richard, Balamir, Melek, Movsesyan, Irina, Malloy, Mary J., Zhao, Hongyu, Kwok, Pui-Yan, Kane, John P., Lifton, Richard P., Pullinger, Clive R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9126845/
https://www.ncbi.nlm.nih.gov/pubmed/35460704
http://dx.doi.org/10.1016/j.jlr.2022.100209
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author Dong, Weilai
Wong, Karen H.Y.
Liu, Youbin
Levy-Sakin, Michal
Hung, Wei-Chien
Li, Mo
Li, Boyang
Jin, Sheng Chih
Choi, Jungmin
Lopez-Giraldez, Francesc
Vaka, Dedeepya
Poon, Annie
Chu, Catherine
Lao, Richard
Balamir, Melek
Movsesyan, Irina
Malloy, Mary J.
Zhao, Hongyu
Kwok, Pui-Yan
Kane, John P.
Lifton, Richard P.
Pullinger, Clive R.
author_facet Dong, Weilai
Wong, Karen H.Y.
Liu, Youbin
Levy-Sakin, Michal
Hung, Wei-Chien
Li, Mo
Li, Boyang
Jin, Sheng Chih
Choi, Jungmin
Lopez-Giraldez, Francesc
Vaka, Dedeepya
Poon, Annie
Chu, Catherine
Lao, Richard
Balamir, Melek
Movsesyan, Irina
Malloy, Mary J.
Zhao, Hongyu
Kwok, Pui-Yan
Kane, John P.
Lifton, Richard P.
Pullinger, Clive R.
author_sort Dong, Weilai
collection PubMed
description Low levels of high density lipoprotein-cholesterol (HDL-C) are associated with an elevated risk of arteriosclerotic coronary heart disease. Heritability of HDL-C levels is high. In this research discovery study, we used whole-exome sequencing to identify damaging gene variants that may play significant roles in determining HDL-C levels. We studied 204 individuals with a mean HDL-C level of 27.8 ± 6.4 mg/dl (range: 4–36 mg/dl). Data were analyzed by statistical gene burden testing and by filtering against candidate gene lists. We found 120 occurrences of probably damaging variants (116 heterozygous; four homozygous) among 45 of 104 recognized HDL candidate genes. Those with the highest prevalence of damaging variants were ABCA1 (n = 20), STAB1 (n = 9), OSBPL1A (n = 8), CPS1 (n = 8), CD36 (n = 7), LRP1 (n = 6), ABCA8 (n = 6), GOT2 (n = 5), AMPD3 (n = 5), WWOX (n = 4), and IRS1 (n = 4). Binomial analysis for damaging missense or loss-of-function variants identified the ABCA1 and LDLR genes at genome-wide significance. In conclusion, whole-exome sequencing of individuals with low HDL-C showed the burden of damaging rare variants in the ABCA1 and LDLR genes is particularly high and revealed numerous occurrences in HDL candidate genes, including many genes identified in genome-wide association study reports. Many of these genes are involved in cancer biology, which accords with epidemiologic findings of the association of HDL deficiency with increased risk of cancer, thus presenting a new area of interest in HDL genomics.
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spelling pubmed-91268452022-05-25 Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia Dong, Weilai Wong, Karen H.Y. Liu, Youbin Levy-Sakin, Michal Hung, Wei-Chien Li, Mo Li, Boyang Jin, Sheng Chih Choi, Jungmin Lopez-Giraldez, Francesc Vaka, Dedeepya Poon, Annie Chu, Catherine Lao, Richard Balamir, Melek Movsesyan, Irina Malloy, Mary J. Zhao, Hongyu Kwok, Pui-Yan Kane, John P. Lifton, Richard P. Pullinger, Clive R. J Lipid Res Research Article Low levels of high density lipoprotein-cholesterol (HDL-C) are associated with an elevated risk of arteriosclerotic coronary heart disease. Heritability of HDL-C levels is high. In this research discovery study, we used whole-exome sequencing to identify damaging gene variants that may play significant roles in determining HDL-C levels. We studied 204 individuals with a mean HDL-C level of 27.8 ± 6.4 mg/dl (range: 4–36 mg/dl). Data were analyzed by statistical gene burden testing and by filtering against candidate gene lists. We found 120 occurrences of probably damaging variants (116 heterozygous; four homozygous) among 45 of 104 recognized HDL candidate genes. Those with the highest prevalence of damaging variants were ABCA1 (n = 20), STAB1 (n = 9), OSBPL1A (n = 8), CPS1 (n = 8), CD36 (n = 7), LRP1 (n = 6), ABCA8 (n = 6), GOT2 (n = 5), AMPD3 (n = 5), WWOX (n = 4), and IRS1 (n = 4). Binomial analysis for damaging missense or loss-of-function variants identified the ABCA1 and LDLR genes at genome-wide significance. In conclusion, whole-exome sequencing of individuals with low HDL-C showed the burden of damaging rare variants in the ABCA1 and LDLR genes is particularly high and revealed numerous occurrences in HDL candidate genes, including many genes identified in genome-wide association study reports. Many of these genes are involved in cancer biology, which accords with epidemiologic findings of the association of HDL deficiency with increased risk of cancer, thus presenting a new area of interest in HDL genomics. American Society for Biochemistry and Molecular Biology 2022-04-20 /pmc/articles/PMC9126845/ /pubmed/35460704 http://dx.doi.org/10.1016/j.jlr.2022.100209 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Dong, Weilai
Wong, Karen H.Y.
Liu, Youbin
Levy-Sakin, Michal
Hung, Wei-Chien
Li, Mo
Li, Boyang
Jin, Sheng Chih
Choi, Jungmin
Lopez-Giraldez, Francesc
Vaka, Dedeepya
Poon, Annie
Chu, Catherine
Lao, Richard
Balamir, Melek
Movsesyan, Irina
Malloy, Mary J.
Zhao, Hongyu
Kwok, Pui-Yan
Kane, John P.
Lifton, Richard P.
Pullinger, Clive R.
Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title_full Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title_fullStr Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title_full_unstemmed Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title_short Whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
title_sort whole-exome sequencing reveals damaging gene variants associated with hypoalphalipoproteinemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9126845/
https://www.ncbi.nlm.nih.gov/pubmed/35460704
http://dx.doi.org/10.1016/j.jlr.2022.100209
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