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PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease

Huntington’s disease (HD) is a dominantly inherited neurodegenerative disorder whose motor, cognitive, and behavioral manifestations are caused by an expanded, somatically unstable CAG repeat in the first exon of HTT that lengthens a polyglutamine tract in huntingtin. Genome-wide association studies...

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Autores principales: McLean, Zachariah L., Gao, Dadi, Correia, Kevin, Roy, Jennie C. L., Shibata, Shota, Farnum, Iris N., Valdepenas-Mellor, Zoe, Rapuru, Manasa, Morini, Elisabetta, Ruliera, Jayla, Gillis, Tammy, Lucente, Diane, Kleinstiver, Benjamin P., Lee, Jong-Min, MacDonald, Marcy E., Wheeler, Vanessa C., Pinto, Ricardo Mouro, Gusella, James F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10402039/
https://www.ncbi.nlm.nih.gov/pubmed/37547003
http://dx.doi.org/10.1101/2023.07.25.550489
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author McLean, Zachariah L.
Gao, Dadi
Correia, Kevin
Roy, Jennie C. L.
Shibata, Shota
Farnum, Iris N.
Valdepenas-Mellor, Zoe
Rapuru, Manasa
Morini, Elisabetta
Ruliera, Jayla
Gillis, Tammy
Lucente, Diane
Kleinstiver, Benjamin P.
Lee, Jong-Min
MacDonald, Marcy E.
Wheeler, Vanessa C.
Pinto, Ricardo Mouro
Gusella, James F.
author_facet McLean, Zachariah L.
Gao, Dadi
Correia, Kevin
Roy, Jennie C. L.
Shibata, Shota
Farnum, Iris N.
Valdepenas-Mellor, Zoe
Rapuru, Manasa
Morini, Elisabetta
Ruliera, Jayla
Gillis, Tammy
Lucente, Diane
Kleinstiver, Benjamin P.
Lee, Jong-Min
MacDonald, Marcy E.
Wheeler, Vanessa C.
Pinto, Ricardo Mouro
Gusella, James F.
author_sort McLean, Zachariah L.
collection PubMed
description Huntington’s disease (HD) is a dominantly inherited neurodegenerative disorder whose motor, cognitive, and behavioral manifestations are caused by an expanded, somatically unstable CAG repeat in the first exon of HTT that lengthens a polyglutamine tract in huntingtin. Genome-wide association studies (GWAS) have revealed DNA repair genes that influence the age-at-onset of HD and implicate somatic CAG repeat expansion as the primary driver of disease timing. To prevent the consequent neuronal damage, small molecule splice modulators (e.g., branaplam) that target HTT to reduce the levels of huntingtin are being investigated as potential HD therapeutics. We found that the effectiveness of the splice modulators can be influenced by genetic variants, both at HTT and other genes where they promote pseudoexon inclusion. Surprisingly, in a novel hTERT-immortalized retinal pigment epithelial cell (RPE1) model for assessing CAG repeat instability, these drugs also reduced the rate of HTT CAG expansion. We determined that the splice modulators also affect the expression of the mismatch repair gene PMS1, a known modifier of HD age-at-onset. Genome editing at specific HTT and PMS1 sequences using CRISPR-Cas9 nuclease confirmed that branaplam suppresses CAG expansion by promoting the inclusion of a pseudoexon in PMS1, making splice modulation of PMS1 a potential strategy for delaying HD onset. Comparison with another splice modulator, risdiplam, suggests that other genes affected by these splice modulators also influence CAG instability and might provide additional therapeutic targets.
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spelling pubmed-104020392023-08-05 PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease McLean, Zachariah L. Gao, Dadi Correia, Kevin Roy, Jennie C. L. Shibata, Shota Farnum, Iris N. Valdepenas-Mellor, Zoe Rapuru, Manasa Morini, Elisabetta Ruliera, Jayla Gillis, Tammy Lucente, Diane Kleinstiver, Benjamin P. Lee, Jong-Min MacDonald, Marcy E. Wheeler, Vanessa C. Pinto, Ricardo Mouro Gusella, James F. bioRxiv Article Huntington’s disease (HD) is a dominantly inherited neurodegenerative disorder whose motor, cognitive, and behavioral manifestations are caused by an expanded, somatically unstable CAG repeat in the first exon of HTT that lengthens a polyglutamine tract in huntingtin. Genome-wide association studies (GWAS) have revealed DNA repair genes that influence the age-at-onset of HD and implicate somatic CAG repeat expansion as the primary driver of disease timing. To prevent the consequent neuronal damage, small molecule splice modulators (e.g., branaplam) that target HTT to reduce the levels of huntingtin are being investigated as potential HD therapeutics. We found that the effectiveness of the splice modulators can be influenced by genetic variants, both at HTT and other genes where they promote pseudoexon inclusion. Surprisingly, in a novel hTERT-immortalized retinal pigment epithelial cell (RPE1) model for assessing CAG repeat instability, these drugs also reduced the rate of HTT CAG expansion. We determined that the splice modulators also affect the expression of the mismatch repair gene PMS1, a known modifier of HD age-at-onset. Genome editing at specific HTT and PMS1 sequences using CRISPR-Cas9 nuclease confirmed that branaplam suppresses CAG expansion by promoting the inclusion of a pseudoexon in PMS1, making splice modulation of PMS1 a potential strategy for delaying HD onset. Comparison with another splice modulator, risdiplam, suggests that other genes affected by these splice modulators also influence CAG instability and might provide additional therapeutic targets. Cold Spring Harbor Laboratory 2023-07-27 /pmc/articles/PMC10402039/ /pubmed/37547003 http://dx.doi.org/10.1101/2023.07.25.550489 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
McLean, Zachariah L.
Gao, Dadi
Correia, Kevin
Roy, Jennie C. L.
Shibata, Shota
Farnum, Iris N.
Valdepenas-Mellor, Zoe
Rapuru, Manasa
Morini, Elisabetta
Ruliera, Jayla
Gillis, Tammy
Lucente, Diane
Kleinstiver, Benjamin P.
Lee, Jong-Min
MacDonald, Marcy E.
Wheeler, Vanessa C.
Pinto, Ricardo Mouro
Gusella, James F.
PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title_full PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title_fullStr PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title_full_unstemmed PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title_short PMS1 as a target for splice modulation to prevent somatic CAG repeat expansion in Huntington’s disease
title_sort pms1 as a target for splice modulation to prevent somatic cag repeat expansion in huntington’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10402039/
https://www.ncbi.nlm.nih.gov/pubmed/37547003
http://dx.doi.org/10.1101/2023.07.25.550489
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