Cargando…

Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy

To date, genome‐wide association studies (GWASs) have discovered 35 susceptible loci of leprosy; however, the cumulative effects of these loci can only partially explain the overall risk of leprosy, and the causal variants and genes within these loci remain unknown. Here, we conducted out new GWASs...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Zhenzhen, Liu, Tingting, Li, Wenchao, Yu, Gongqi, Mi, Zihao, Wang, Chuan, Liao, Xiaojie, Huai, Pengcheng, Chu, Tongsheng, Liu, Dianchang, Sun, Lele, Fu, Xi'an, Sun, Yonghu, Wang, Honglei, Wang, Na, Liu, Jianjun, Liu, Hong, Zhang, Furen
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/PMC10674079/
https://www.ncbi.nlm.nih.gov/pubmed/38020709
http://dx.doi.org/10.1002/mco2.415
_version_ 1785149676523094016
author Wang, Zhenzhen
Liu, Tingting
Li, Wenchao
Yu, Gongqi
Mi, Zihao
Wang, Chuan
Liao, Xiaojie
Huai, Pengcheng
Chu, Tongsheng
Liu, Dianchang
Sun, Lele
Fu, Xi'an
Sun, Yonghu
Wang, Honglei
Wang, Na
Liu, Jianjun
Liu, Hong
Zhang, Furen
author_facet Wang, Zhenzhen
Liu, Tingting
Li, Wenchao
Yu, Gongqi
Mi, Zihao
Wang, Chuan
Liao, Xiaojie
Huai, Pengcheng
Chu, Tongsheng
Liu, Dianchang
Sun, Lele
Fu, Xi'an
Sun, Yonghu
Wang, Honglei
Wang, Na
Liu, Jianjun
Liu, Hong
Zhang, Furen
author_sort Wang, Zhenzhen
collection PubMed
description To date, genome‐wide association studies (GWASs) have discovered 35 susceptible loci of leprosy; however, the cumulative effects of these loci can only partially explain the overall risk of leprosy, and the causal variants and genes within these loci remain unknown. Here, we conducted out new GWASs in two independent cohorts of 5007 cases and 4579 controls and then a meta‐analysis in these newly generated and multiple previously published (2277 cases and 3159 controls) datasets were performed. Three novel and 15 previously reported risk loci were identified from these datasets, increasing the known leprosy risk loci of explained genetic heritability from 23.0 to 38.5%. A comprehensive fine‐mapping analysis was conducted, and 19 causal variants and 14 causal genes were identified. Specifically, manual checking of epigenomic information from the Epimap database revealed that the causal variants were mainly located within the immune‐relevant or immune‐specific regulatory elements. Furthermore, by using gene‐set, tissue, and cell‐type enrichment analyses, we highlighted the key roles of immune‐related tissues and cells and implicated the PD‐1 signaling pathways in the pathogenetic mechanism of leprosy. Collectively, our study identified candidate causal variants and elucidated the potential regulatory and coding mechanisms for genes associated with leprosy.
format Online
Article
Text
id pubmed-10674079
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-106740792023-11-24 Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy Wang, Zhenzhen Liu, Tingting Li, Wenchao Yu, Gongqi Mi, Zihao Wang, Chuan Liao, Xiaojie Huai, Pengcheng Chu, Tongsheng Liu, Dianchang Sun, Lele Fu, Xi'an Sun, Yonghu Wang, Honglei Wang, Na Liu, Jianjun Liu, Hong Zhang, Furen MedComm (2020) Original Articles To date, genome‐wide association studies (GWASs) have discovered 35 susceptible loci of leprosy; however, the cumulative effects of these loci can only partially explain the overall risk of leprosy, and the causal variants and genes within these loci remain unknown. Here, we conducted out new GWASs in two independent cohorts of 5007 cases and 4579 controls and then a meta‐analysis in these newly generated and multiple previously published (2277 cases and 3159 controls) datasets were performed. Three novel and 15 previously reported risk loci were identified from these datasets, increasing the known leprosy risk loci of explained genetic heritability from 23.0 to 38.5%. A comprehensive fine‐mapping analysis was conducted, and 19 causal variants and 14 causal genes were identified. Specifically, manual checking of epigenomic information from the Epimap database revealed that the causal variants were mainly located within the immune‐relevant or immune‐specific regulatory elements. Furthermore, by using gene‐set, tissue, and cell‐type enrichment analyses, we highlighted the key roles of immune‐related tissues and cells and implicated the PD‐1 signaling pathways in the pathogenetic mechanism of leprosy. Collectively, our study identified candidate causal variants and elucidated the potential regulatory and coding mechanisms for genes associated with leprosy. John Wiley and Sons Inc. 2023-11-24 /pmc/articles/PMC10674079/ /pubmed/38020709 http://dx.doi.org/10.1002/mco2.415 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
Wang, Zhenzhen
Liu, Tingting
Li, Wenchao
Yu, Gongqi
Mi, Zihao
Wang, Chuan
Liao, Xiaojie
Huai, Pengcheng
Chu, Tongsheng
Liu, Dianchang
Sun, Lele
Fu, Xi'an
Sun, Yonghu
Wang, Honglei
Wang, Na
Liu, Jianjun
Liu, Hong
Zhang, Furen
Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title_full Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title_fullStr Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title_full_unstemmed Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title_short Genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
title_sort genome‐wide meta‐analysis and fine‐mapping prioritize potential causal variants and genes related to leprosy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674079/
https://www.ncbi.nlm.nih.gov/pubmed/38020709
http://dx.doi.org/10.1002/mco2.415
work_keys_str_mv AT wangzhenzhen genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liutingting genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liwenchao genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT yugongqi genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT mizihao genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT wangchuan genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liaoxiaojie genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT huaipengcheng genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT chutongsheng genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liudianchang genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT sunlele genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT fuxian genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT sunyonghu genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT wanghonglei genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT wangna genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liujianjun genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT liuhong genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy
AT zhangfuren genomewidemetaanalysisandfinemappingprioritizepotentialcausalvariantsandgenesrelatedtoleprosy