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A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity

Genetic heterogeneity poses a challenge to research and clinical translation of autism spectrum disorder (ASD). In this study, we conducted a plasma proteomic and metabolomic study of children with ASD with and without risk genes (de novo mutation) and controls to explore the impact of genetic heter...

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Autores principales: Tang, Xiaoxiao, Feng, Chengyun, Zhao, Yuxi, Zhang, Huajie, Gao, Yan, Cao, Xueshan, Hong, Qi, Lin, Jing, Zhuang, Hongbin, Feng, Yuying, Wang, Hanghang, Shen, Liming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10518435/
https://www.ncbi.nlm.nih.gov/pubmed/37752942
http://dx.doi.org/10.1002/mco2.380
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author Tang, Xiaoxiao
Feng, Chengyun
Zhao, Yuxi
Zhang, Huajie
Gao, Yan
Cao, Xueshan
Hong, Qi
Lin, Jing
Zhuang, Hongbin
Feng, Yuying
Wang, Hanghang
Shen, Liming
author_facet Tang, Xiaoxiao
Feng, Chengyun
Zhao, Yuxi
Zhang, Huajie
Gao, Yan
Cao, Xueshan
Hong, Qi
Lin, Jing
Zhuang, Hongbin
Feng, Yuying
Wang, Hanghang
Shen, Liming
author_sort Tang, Xiaoxiao
collection PubMed
description Genetic heterogeneity poses a challenge to research and clinical translation of autism spectrum disorder (ASD). In this study, we conducted a plasma proteomic and metabolomic study of children with ASD with and without risk genes (de novo mutation) and controls to explore the impact of genetic heterogeneity on the search for biomarkers for ASD. In terms of the proteomic and metabolomic profiles, the groups of children with ASD carrying and those not carrying de novo mutation tended to cluster and overlap, and integrating them yielded differentially expressed proteins and differential metabolites that effectively distinguished ASD from controls. The mechanisms associated with them focus on several common and previously reported mechanisms. Proteomics results highlight the role of complement, inflammation and immunity, and cell adhesion. The main pathways of metabolic perturbations include amino acid, vitamin, glycerophospholipid, tryptophan, and glutamates metabolic pathways and solute carriers‐related pathways. Integrating the two omics analyses revealed that L‐glutamic acid and malate dehydrogenase may play key roles in the pathogenesis of ASD. These results suggest that children with ASD may have important underlying common mechanisms. They are not only potential therapeutic targets for ASD but also important contributors to the study of biomarkers for the disease.
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spelling pubmed-105184352023-09-26 A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity Tang, Xiaoxiao Feng, Chengyun Zhao, Yuxi Zhang, Huajie Gao, Yan Cao, Xueshan Hong, Qi Lin, Jing Zhuang, Hongbin Feng, Yuying Wang, Hanghang Shen, Liming MedComm (2020) Original Articles Genetic heterogeneity poses a challenge to research and clinical translation of autism spectrum disorder (ASD). In this study, we conducted a plasma proteomic and metabolomic study of children with ASD with and without risk genes (de novo mutation) and controls to explore the impact of genetic heterogeneity on the search for biomarkers for ASD. In terms of the proteomic and metabolomic profiles, the groups of children with ASD carrying and those not carrying de novo mutation tended to cluster and overlap, and integrating them yielded differentially expressed proteins and differential metabolites that effectively distinguished ASD from controls. The mechanisms associated with them focus on several common and previously reported mechanisms. Proteomics results highlight the role of complement, inflammation and immunity, and cell adhesion. The main pathways of metabolic perturbations include amino acid, vitamin, glycerophospholipid, tryptophan, and glutamates metabolic pathways and solute carriers‐related pathways. Integrating the two omics analyses revealed that L‐glutamic acid and malate dehydrogenase may play key roles in the pathogenesis of ASD. These results suggest that children with ASD may have important underlying common mechanisms. They are not only potential therapeutic targets for ASD but also important contributors to the study of biomarkers for the disease. John Wiley and Sons Inc. 2023-09-24 /pmc/articles/PMC10518435/ /pubmed/37752942 http://dx.doi.org/10.1002/mco2.380 Text en © 2023 The Authors. MedComm published by Sichuan International Medical Exchange & Promotion Association (SCIMEA) and John Wiley & Sons Australia, Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://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
Tang, Xiaoxiao
Feng, Chengyun
Zhao, Yuxi
Zhang, Huajie
Gao, Yan
Cao, Xueshan
Hong, Qi
Lin, Jing
Zhuang, Hongbin
Feng, Yuying
Wang, Hanghang
Shen, Liming
A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title_full A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title_fullStr A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title_full_unstemmed A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title_short A study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
title_sort study of genetic heterogeneity in autism spectrum disorders based on plasma proteomic and metabolomic analysis: multiomics study of autism heterogeneity
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10518435/
https://www.ncbi.nlm.nih.gov/pubmed/37752942
http://dx.doi.org/10.1002/mco2.380
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