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Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells

Dystrophin Dp71 is the most abundant product of the Duchenne muscular dystrophy gene in the nervous system, and mutations impairing its function have been associated with the neurodevelopmental symptoms present in a third of DMD patients. Dp71 is required for the clustering of neurotransmitter recep...

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Autores principales: Rugerio-Martínez, Claudia Ivette, Ramos, Daniel, Segura-Olvera, Abel, Murillo-Melo, Nadia Mireya, Tapia-Guerrero, Yessica Sarai, Argüello-García, Raúl, Leyva-García, Norberto, Hernández-Hernández, Oscar, Cisneros, Bulmaro, Suárez-Sánchez, Rocío
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570083/
https://www.ncbi.nlm.nih.gov/pubmed/36233175
http://dx.doi.org/10.3390/ijms231911876
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author Rugerio-Martínez, Claudia Ivette
Ramos, Daniel
Segura-Olvera, Abel
Murillo-Melo, Nadia Mireya
Tapia-Guerrero, Yessica Sarai
Argüello-García, Raúl
Leyva-García, Norberto
Hernández-Hernández, Oscar
Cisneros, Bulmaro
Suárez-Sánchez, Rocío
author_facet Rugerio-Martínez, Claudia Ivette
Ramos, Daniel
Segura-Olvera, Abel
Murillo-Melo, Nadia Mireya
Tapia-Guerrero, Yessica Sarai
Argüello-García, Raúl
Leyva-García, Norberto
Hernández-Hernández, Oscar
Cisneros, Bulmaro
Suárez-Sánchez, Rocío
author_sort Rugerio-Martínez, Claudia Ivette
collection PubMed
description Dystrophin Dp71 is the most abundant product of the Duchenne muscular dystrophy gene in the nervous system, and mutations impairing its function have been associated with the neurodevelopmental symptoms present in a third of DMD patients. Dp71 is required for the clustering of neurotransmitter receptors and the neuronal differentiation of cultured cells; nonetheless, its precise role in neuronal cells remains to be poorly understood. In this study, we analyzed the effect of two pathogenic DMD gene point mutations on the Dp71 function in neurons. We engineered C272Y and E299del mutations to express GFP-tagged Dp71 protein variants in N1E-115 and SH-SY5Y neuronal cells. Unexpectedly, the ectopic expression of Dp71 mutants resulted in protein aggregation, which may be mechanistically caused by the effect of the mutations on Dp71 structure, as predicted by protein modeling and molecular dynamics simulations. Interestingly, Dp71 mutant variants acquired a dominant negative function that, in turn, dramatically impaired the distribution of different Dp71 protein partners, including β-dystroglycan, nuclear lamins A/C and B1, the high-mobility group (HMG)-containing protein (BRAF35) and the BRAF35-family-member inhibitor of BRAF35 (iBRAF). Further analysis of Dp71 mutants provided evidence showing a role for Dp71 in modulating both heterochromatin marker H3K9me2 organization and the neuronal genes’ expression, via its interaction with iBRAF and BRAF5.
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spelling pubmed-95700832022-10-17 Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells Rugerio-Martínez, Claudia Ivette Ramos, Daniel Segura-Olvera, Abel Murillo-Melo, Nadia Mireya Tapia-Guerrero, Yessica Sarai Argüello-García, Raúl Leyva-García, Norberto Hernández-Hernández, Oscar Cisneros, Bulmaro Suárez-Sánchez, Rocío Int J Mol Sci Article Dystrophin Dp71 is the most abundant product of the Duchenne muscular dystrophy gene in the nervous system, and mutations impairing its function have been associated with the neurodevelopmental symptoms present in a third of DMD patients. Dp71 is required for the clustering of neurotransmitter receptors and the neuronal differentiation of cultured cells; nonetheless, its precise role in neuronal cells remains to be poorly understood. In this study, we analyzed the effect of two pathogenic DMD gene point mutations on the Dp71 function in neurons. We engineered C272Y and E299del mutations to express GFP-tagged Dp71 protein variants in N1E-115 and SH-SY5Y neuronal cells. Unexpectedly, the ectopic expression of Dp71 mutants resulted in protein aggregation, which may be mechanistically caused by the effect of the mutations on Dp71 structure, as predicted by protein modeling and molecular dynamics simulations. Interestingly, Dp71 mutant variants acquired a dominant negative function that, in turn, dramatically impaired the distribution of different Dp71 protein partners, including β-dystroglycan, nuclear lamins A/C and B1, the high-mobility group (HMG)-containing protein (BRAF35) and the BRAF35-family-member inhibitor of BRAF35 (iBRAF). Further analysis of Dp71 mutants provided evidence showing a role for Dp71 in modulating both heterochromatin marker H3K9me2 organization and the neuronal genes’ expression, via its interaction with iBRAF and BRAF5. MDPI 2022-10-06 /pmc/articles/PMC9570083/ /pubmed/36233175 http://dx.doi.org/10.3390/ijms231911876 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rugerio-Martínez, Claudia Ivette
Ramos, Daniel
Segura-Olvera, Abel
Murillo-Melo, Nadia Mireya
Tapia-Guerrero, Yessica Sarai
Argüello-García, Raúl
Leyva-García, Norberto
Hernández-Hernández, Oscar
Cisneros, Bulmaro
Suárez-Sánchez, Rocío
Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title_full Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title_fullStr Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title_full_unstemmed Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title_short Dp71 Point Mutations Induce Protein Aggregation, Loss of Nuclear Lamina Integrity and Impaired Braf35 and Ibraf Function in Neuronal Cells
title_sort dp71 point mutations induce protein aggregation, loss of nuclear lamina integrity and impaired braf35 and ibraf function in neuronal cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570083/
https://www.ncbi.nlm.nih.gov/pubmed/36233175
http://dx.doi.org/10.3390/ijms231911876
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