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Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder

OBJECTIVE: We have used long-read single molecule, real-time (SMRT) sequencing to fully characterize a ~12Mb genomic region on chromosome Xq24-q27, significantly linked to bipolar disorder (BD) in an extended family from a genetic sub-isolate. This family segregates BD in at least four generations w...

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Autores principales: Laine, Pia, Rowell, William J., Paulin, Lars, Kujawa, Steve, Raterman, Denise, Mayhew, George, Wendt, Jennifer, Burgess, Daniel L., Partonen, Timo, Paunio, Tiina, Auvinen, Petri, Ekholm, Jenny M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8675739/
https://www.ncbi.nlm.nih.gov/pubmed/34914762
http://dx.doi.org/10.1371/journal.pone.0261170
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author Laine, Pia
Rowell, William J.
Paulin, Lars
Kujawa, Steve
Raterman, Denise
Mayhew, George
Wendt, Jennifer
Burgess, Daniel L.
Partonen, Timo
Paunio, Tiina
Auvinen, Petri
Ekholm, Jenny M.
author_facet Laine, Pia
Rowell, William J.
Paulin, Lars
Kujawa, Steve
Raterman, Denise
Mayhew, George
Wendt, Jennifer
Burgess, Daniel L.
Partonen, Timo
Paunio, Tiina
Auvinen, Petri
Ekholm, Jenny M.
author_sort Laine, Pia
collection PubMed
description OBJECTIVE: We have used long-read single molecule, real-time (SMRT) sequencing to fully characterize a ~12Mb genomic region on chromosome Xq24-q27, significantly linked to bipolar disorder (BD) in an extended family from a genetic sub-isolate. This family segregates BD in at least four generations with 24 affected individuals. METHODS: We selected 16 family members for targeted sequencing. The selected individuals either carried the disease haplotype, were non-carriers of the disease haplotype, or served as married-in controls. We designed hybrid capture probes enriching for 5-9Kb fragments spanning the entire 12Mb region that were then sequenced to screen for candidate structural variants (SVs) that could explain the increased risk for BD in this extended family. RESULTS: Altogether, 201 variants were detected in the critically linked region. Although most of these represented common variants, three variants emerged that showed near-perfect segregation among all BD type I affected individuals. Two of the SVs were identified in or near genes belonging to the RNA Binding Motif Protein, X-Linked (RBMX) gene family—a 330bp Alu (subfamily AluYa5) deletion in intron 3 of the RBMX2 gene and an intergenic 27bp tandem repeat deletion between the RBMX and G protein-coupled receptor 101 (GPR101) genes. The third SV was a 50bp tandem repeat insertion in intron 1 of the Coagulation Factor IX (F9) gene. CONCLUSIONS: Among the three genetically linked SVs, additional evidence supported the Alu element deletion in RBMX2 as the leading candidate for contributing directly to the disease development of BD type I in this extended family.
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spelling pubmed-86757392021-12-17 Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder Laine, Pia Rowell, William J. Paulin, Lars Kujawa, Steve Raterman, Denise Mayhew, George Wendt, Jennifer Burgess, Daniel L. Partonen, Timo Paunio, Tiina Auvinen, Petri Ekholm, Jenny M. PLoS One Research Article OBJECTIVE: We have used long-read single molecule, real-time (SMRT) sequencing to fully characterize a ~12Mb genomic region on chromosome Xq24-q27, significantly linked to bipolar disorder (BD) in an extended family from a genetic sub-isolate. This family segregates BD in at least four generations with 24 affected individuals. METHODS: We selected 16 family members for targeted sequencing. The selected individuals either carried the disease haplotype, were non-carriers of the disease haplotype, or served as married-in controls. We designed hybrid capture probes enriching for 5-9Kb fragments spanning the entire 12Mb region that were then sequenced to screen for candidate structural variants (SVs) that could explain the increased risk for BD in this extended family. RESULTS: Altogether, 201 variants were detected in the critically linked region. Although most of these represented common variants, three variants emerged that showed near-perfect segregation among all BD type I affected individuals. Two of the SVs were identified in or near genes belonging to the RNA Binding Motif Protein, X-Linked (RBMX) gene family—a 330bp Alu (subfamily AluYa5) deletion in intron 3 of the RBMX2 gene and an intergenic 27bp tandem repeat deletion between the RBMX and G protein-coupled receptor 101 (GPR101) genes. The third SV was a 50bp tandem repeat insertion in intron 1 of the Coagulation Factor IX (F9) gene. CONCLUSIONS: Among the three genetically linked SVs, additional evidence supported the Alu element deletion in RBMX2 as the leading candidate for contributing directly to the disease development of BD type I in this extended family. Public Library of Science 2021-12-16 /pmc/articles/PMC8675739/ /pubmed/34914762 http://dx.doi.org/10.1371/journal.pone.0261170 Text en © 2021 Laine et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Laine, Pia
Rowell, William J.
Paulin, Lars
Kujawa, Steve
Raterman, Denise
Mayhew, George
Wendt, Jennifer
Burgess, Daniel L.
Partonen, Timo
Paunio, Tiina
Auvinen, Petri
Ekholm, Jenny M.
Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title_full Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title_fullStr Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title_full_unstemmed Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title_short Alu element in the RNA binding motif protein, X-linked 2 (RBMX2) gene found to be linked to bipolar disorder
title_sort alu element in the rna binding motif protein, x-linked 2 (rbmx2) gene found to be linked to bipolar disorder
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8675739/
https://www.ncbi.nlm.nih.gov/pubmed/34914762
http://dx.doi.org/10.1371/journal.pone.0261170
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