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Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume

The volume of subcortical structures represents a reliable, quantitative, and objective phenotype that captures genetic effects, environmental effects such as trauma, and disease effects such as posttraumatic stress disorder (PTSD). Trauma and PTSD represent potent exposures that may interact with g...

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Autores principales: Zheng, Yuanchao, Garrett, Melanie E., Sun, Delin, Clarke-Rubright, Emily K., Haswell, Courtney C., Maihofer, Adam X., Elman, Jeremy A., Franz, Carol E., Lyons, Michael J., Kremen, William S., Peverill, Matthew, Sambrook, Kelly, McLaughlin, Katie A., Davenport, Nicholas D., Disner, Seth, Sponheim, Scott R., Andrew, Elpiniki, Korgaonkar, Mayuresh, Bryant, Richard, Varkevisser, Tim, Geuze, Elbert, Coleman, Jonathan, Beckham, Jean C., Kimbrel, Nathan A., Sullivan, Danielle, Miller, Mark, Hayes, Jasmeet, Verfaellie, Mieke, Wolf, Erika, Salat, David, Spielberg, Jeffrey M., Milberg, William, McGlinchey, Regina, Dennis, Emily L., Thompson, Paul M., Medland, Sarah, Jahanshad, Neda, Nievergelt, Caroline M., Ashley-Koch, Allison E., Logue, Mark W., Morey, Rajendra A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8677780/
https://www.ncbi.nlm.nih.gov/pubmed/34916497
http://dx.doi.org/10.1038/s41398-021-01707-x
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author Zheng, Yuanchao
Garrett, Melanie E.
Sun, Delin
Clarke-Rubright, Emily K.
Haswell, Courtney C.
Maihofer, Adam X.
Elman, Jeremy A.
Franz, Carol E.
Lyons, Michael J.
Kremen, William S.
Peverill, Matthew
Sambrook, Kelly
McLaughlin, Katie A.
Davenport, Nicholas D.
Disner, Seth
Sponheim, Scott R.
Andrew, Elpiniki
Korgaonkar, Mayuresh
Bryant, Richard
Varkevisser, Tim
Geuze, Elbert
Coleman, Jonathan
Beckham, Jean C.
Kimbrel, Nathan A.
Sullivan, Danielle
Miller, Mark
Hayes, Jasmeet
Verfaellie, Mieke
Wolf, Erika
Salat, David
Spielberg, Jeffrey M.
Milberg, William
McGlinchey, Regina
Dennis, Emily L.
Thompson, Paul M.
Medland, Sarah
Jahanshad, Neda
Nievergelt, Caroline M.
Ashley-Koch, Allison E.
Logue, Mark W.
Morey, Rajendra A.
author_facet Zheng, Yuanchao
Garrett, Melanie E.
Sun, Delin
Clarke-Rubright, Emily K.
Haswell, Courtney C.
Maihofer, Adam X.
Elman, Jeremy A.
Franz, Carol E.
Lyons, Michael J.
Kremen, William S.
Peverill, Matthew
Sambrook, Kelly
McLaughlin, Katie A.
Davenport, Nicholas D.
Disner, Seth
Sponheim, Scott R.
Andrew, Elpiniki
Korgaonkar, Mayuresh
Bryant, Richard
Varkevisser, Tim
Geuze, Elbert
Coleman, Jonathan
Beckham, Jean C.
Kimbrel, Nathan A.
Sullivan, Danielle
Miller, Mark
Hayes, Jasmeet
Verfaellie, Mieke
Wolf, Erika
Salat, David
Spielberg, Jeffrey M.
Milberg, William
McGlinchey, Regina
Dennis, Emily L.
Thompson, Paul M.
Medland, Sarah
Jahanshad, Neda
Nievergelt, Caroline M.
Ashley-Koch, Allison E.
Logue, Mark W.
Morey, Rajendra A.
author_sort Zheng, Yuanchao
collection PubMed
description The volume of subcortical structures represents a reliable, quantitative, and objective phenotype that captures genetic effects, environmental effects such as trauma, and disease effects such as posttraumatic stress disorder (PTSD). Trauma and PTSD represent potent exposures that may interact with genetic markers to influence brain structure and function. Genetic variants, associated with subcortical volumes in two large normative discovery samples, were used to compute polygenic scores (PGS) for the volume of seven subcortical structures. These were applied to a target sample enriched for childhood trauma and PTSD. Subcortical volume PGS from the discovery sample were strongly associated in our trauma/PTSD enriched sample (n = 7580) with respective subcortical volumes of the hippocampus (p = 1.10 × 10(−20)), thalamus (p = 7.46 × 10(−10)), caudate (p = 1.97 × 10(−18)), putamen (p = 1.7 × 10(−12)), and nucleus accumbens (p = 1.99 × 10(−7)). We found a significant association between the hippocampal volume PGS and hippocampal volume in control subjects from our sample, but was absent in individuals with PTSD (GxE; (beta = −0.10, p = 0.027)). This significant GxE (PGS × PTSD) relationship persisted (p < 1 × 10(−19)) in four out of five threshold peaks (0.024, 0.133, 0.487, 0.730, and 0.889) used to calculate hippocampal volume PGSs. We detected similar GxE (G × ChildTrauma) relationships in the amygdala for exposure to childhood trauma (rs4702973; p = 2.16 × 10(−7)) or PTSD (rs10861272; p = 1.78 × 10(−6)) in the CHST11 gene. The hippocampus and amygdala are pivotal brain structures in mediating PTSD symptomatology. Trauma exposure and PTSD modulate the effect of polygenic markers on hippocampal volume (GxE) and the amygdala volume PGS is associated with PTSD risk, which supports the role of amygdala volume as a risk factor for PTSD.
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spelling pubmed-86777802022-01-04 Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume Zheng, Yuanchao Garrett, Melanie E. Sun, Delin Clarke-Rubright, Emily K. Haswell, Courtney C. Maihofer, Adam X. Elman, Jeremy A. Franz, Carol E. Lyons, Michael J. Kremen, William S. Peverill, Matthew Sambrook, Kelly McLaughlin, Katie A. Davenport, Nicholas D. Disner, Seth Sponheim, Scott R. Andrew, Elpiniki Korgaonkar, Mayuresh Bryant, Richard Varkevisser, Tim Geuze, Elbert Coleman, Jonathan Beckham, Jean C. Kimbrel, Nathan A. Sullivan, Danielle Miller, Mark Hayes, Jasmeet Verfaellie, Mieke Wolf, Erika Salat, David Spielberg, Jeffrey M. Milberg, William McGlinchey, Regina Dennis, Emily L. Thompson, Paul M. Medland, Sarah Jahanshad, Neda Nievergelt, Caroline M. Ashley-Koch, Allison E. Logue, Mark W. Morey, Rajendra A. Transl Psychiatry Article The volume of subcortical structures represents a reliable, quantitative, and objective phenotype that captures genetic effects, environmental effects such as trauma, and disease effects such as posttraumatic stress disorder (PTSD). Trauma and PTSD represent potent exposures that may interact with genetic markers to influence brain structure and function. Genetic variants, associated with subcortical volumes in two large normative discovery samples, were used to compute polygenic scores (PGS) for the volume of seven subcortical structures. These were applied to a target sample enriched for childhood trauma and PTSD. Subcortical volume PGS from the discovery sample were strongly associated in our trauma/PTSD enriched sample (n = 7580) with respective subcortical volumes of the hippocampus (p = 1.10 × 10(−20)), thalamus (p = 7.46 × 10(−10)), caudate (p = 1.97 × 10(−18)), putamen (p = 1.7 × 10(−12)), and nucleus accumbens (p = 1.99 × 10(−7)). We found a significant association between the hippocampal volume PGS and hippocampal volume in control subjects from our sample, but was absent in individuals with PTSD (GxE; (beta = −0.10, p = 0.027)). This significant GxE (PGS × PTSD) relationship persisted (p < 1 × 10(−19)) in four out of five threshold peaks (0.024, 0.133, 0.487, 0.730, and 0.889) used to calculate hippocampal volume PGSs. We detected similar GxE (G × ChildTrauma) relationships in the amygdala for exposure to childhood trauma (rs4702973; p = 2.16 × 10(−7)) or PTSD (rs10861272; p = 1.78 × 10(−6)) in the CHST11 gene. The hippocampus and amygdala are pivotal brain structures in mediating PTSD symptomatology. Trauma exposure and PTSD modulate the effect of polygenic markers on hippocampal volume (GxE) and the amygdala volume PGS is associated with PTSD risk, which supports the role of amygdala volume as a risk factor for PTSD. Nature Publishing Group UK 2021-12-16 /pmc/articles/PMC8677780/ /pubmed/34916497 http://dx.doi.org/10.1038/s41398-021-01707-x Text en © This is a U.S. government work and not under copyright protection in the U.S.; foreign copyright protection may apply 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zheng, Yuanchao
Garrett, Melanie E.
Sun, Delin
Clarke-Rubright, Emily K.
Haswell, Courtney C.
Maihofer, Adam X.
Elman, Jeremy A.
Franz, Carol E.
Lyons, Michael J.
Kremen, William S.
Peverill, Matthew
Sambrook, Kelly
McLaughlin, Katie A.
Davenport, Nicholas D.
Disner, Seth
Sponheim, Scott R.
Andrew, Elpiniki
Korgaonkar, Mayuresh
Bryant, Richard
Varkevisser, Tim
Geuze, Elbert
Coleman, Jonathan
Beckham, Jean C.
Kimbrel, Nathan A.
Sullivan, Danielle
Miller, Mark
Hayes, Jasmeet
Verfaellie, Mieke
Wolf, Erika
Salat, David
Spielberg, Jeffrey M.
Milberg, William
McGlinchey, Regina
Dennis, Emily L.
Thompson, Paul M.
Medland, Sarah
Jahanshad, Neda
Nievergelt, Caroline M.
Ashley-Koch, Allison E.
Logue, Mark W.
Morey, Rajendra A.
Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title_full Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title_fullStr Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title_full_unstemmed Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title_short Trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
title_sort trauma and posttraumatic stress disorder modulate polygenic predictors of hippocampal and amygdala volume
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8677780/
https://www.ncbi.nlm.nih.gov/pubmed/34916497
http://dx.doi.org/10.1038/s41398-021-01707-x
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