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Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa

Introduction: 90% of visually impaired people live in developing countries. There are various types of vision impairment, but the focus of the current study is retinitis pigmentosa (RP). Up to now, 150 mutations have been reported that are linked with RP. Methodology: Healthy and affected members fr...

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Autores principales: Habib, Faiza, Yasin, Muhammad, ., Namal, ., Shaheryar, Nasir, Areej, Hussain, Abrar, Ndubuisi, Chinonso, Azam, Hiba, Sajid, Muhammad, Rasheed, Arsalan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cureus 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10200129/
https://www.ncbi.nlm.nih.gov/pubmed/37267051
http://dx.doi.org/10.7759/cureus.37933
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author Habib, Faiza
Yasin, Muhammad
., Namal
., Shaheryar
Nasir, Areej
Hussain, Abrar
Ndubuisi, Chinonso
Azam, Hiba
Sajid, Muhammad
Rasheed, Arsalan
author_facet Habib, Faiza
Yasin, Muhammad
., Namal
., Shaheryar
Nasir, Areej
Hussain, Abrar
Ndubuisi, Chinonso
Azam, Hiba
Sajid, Muhammad
Rasheed, Arsalan
author_sort Habib, Faiza
collection PubMed
description Introduction: 90% of visually impaired people live in developing countries. There are various types of vision impairment, but the focus of the current study is retinitis pigmentosa (RP). Up to now, 150 mutations have been reported that are linked with RP. Methodology: Healthy and affected members from two Pakistani families (RP01 and RP02) segregating autosomal recessive RP were selected for DNA extraction. PCR was conducted, and the amplified PCR products were analyzed using Polyacrylamide Gel Electrophoresis (PAGE) and visualized in the Gel Doc system for linkage analysis. The Gene Hunter 2.1r5 tool in the Simple Linkage v5.052 beta software suite was used to conduct multipoint parametric linkage analysis on the two consanguineous families examined on the 6K Illumina array. Exons and intron-exon borders of all known arRP genes found in homozygous areas were sequenced in the matching probands using a 3130 automated sequencer and the Big Dye Terminator Cycle Sequencing Kit v3.1. The mutation study was carried out using the AlaMut 1.5 program. Results: In both families, linkage analysis was performed using microsatellite marker DIS422 for gene crumbs homolog 1 (CRB1) and microsatellite marker D8S2332 for gene Retinitis Pigmentosa 1 (RP1). Multipoint linkage analysis identifies genomic regions that could potentially contain the genetic defect. In family RP01, only a single peak with a maximal multipoint LOD score of 3.00 was identified on chromosome 1, whereas in family RP02, multiple peaks with multipoint LOD scores of 1.80 were identified on chromosome 8. Analysis of the CRB1 gene revealed a homozygous substitution of glycine for valine (c.1152T>G; p.V243G), whereas the RP1 gene demonstrated that leucine was substituted for proline as a result of cytosine to thymine transfer (c.3419C>T; p. P1035L).  Conclusion: Homozygosity mapping is a powerful method for finding genetic abnormalities that are both precise and comprehensive for identifying harmful variations in consanguineous families. This method is invaluable for providing accurate clinical diagnostic and genetic advice in remote regions of Pakistan while also increasing knowledge about autosomal recessive diseases and the dangers of mixing.
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spelling pubmed-102001292023-05-22 Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa Habib, Faiza Yasin, Muhammad ., Namal ., Shaheryar Nasir, Areej Hussain, Abrar Ndubuisi, Chinonso Azam, Hiba Sajid, Muhammad Rasheed, Arsalan Cureus Genetics Introduction: 90% of visually impaired people live in developing countries. There are various types of vision impairment, but the focus of the current study is retinitis pigmentosa (RP). Up to now, 150 mutations have been reported that are linked with RP. Methodology: Healthy and affected members from two Pakistani families (RP01 and RP02) segregating autosomal recessive RP were selected for DNA extraction. PCR was conducted, and the amplified PCR products were analyzed using Polyacrylamide Gel Electrophoresis (PAGE) and visualized in the Gel Doc system for linkage analysis. The Gene Hunter 2.1r5 tool in the Simple Linkage v5.052 beta software suite was used to conduct multipoint parametric linkage analysis on the two consanguineous families examined on the 6K Illumina array. Exons and intron-exon borders of all known arRP genes found in homozygous areas were sequenced in the matching probands using a 3130 automated sequencer and the Big Dye Terminator Cycle Sequencing Kit v3.1. The mutation study was carried out using the AlaMut 1.5 program. Results: In both families, linkage analysis was performed using microsatellite marker DIS422 for gene crumbs homolog 1 (CRB1) and microsatellite marker D8S2332 for gene Retinitis Pigmentosa 1 (RP1). Multipoint linkage analysis identifies genomic regions that could potentially contain the genetic defect. In family RP01, only a single peak with a maximal multipoint LOD score of 3.00 was identified on chromosome 1, whereas in family RP02, multiple peaks with multipoint LOD scores of 1.80 were identified on chromosome 8. Analysis of the CRB1 gene revealed a homozygous substitution of glycine for valine (c.1152T>G; p.V243G), whereas the RP1 gene demonstrated that leucine was substituted for proline as a result of cytosine to thymine transfer (c.3419C>T; p. P1035L).  Conclusion: Homozygosity mapping is a powerful method for finding genetic abnormalities that are both precise and comprehensive for identifying harmful variations in consanguineous families. This method is invaluable for providing accurate clinical diagnostic and genetic advice in remote regions of Pakistan while also increasing knowledge about autosomal recessive diseases and the dangers of mixing. Cureus 2023-04-21 /pmc/articles/PMC10200129/ /pubmed/37267051 http://dx.doi.org/10.7759/cureus.37933 Text en Copyright © 2023, Habib et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Genetics
Habib, Faiza
Yasin, Muhammad
., Namal
., Shaheryar
Nasir, Areej
Hussain, Abrar
Ndubuisi, Chinonso
Azam, Hiba
Sajid, Muhammad
Rasheed, Arsalan
Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title_full Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title_fullStr Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title_full_unstemmed Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title_short Molecular Genetic Analysis of the Autosomal Recessive Non-Syndromic Inherited Retinitis Pigmentosa
title_sort molecular genetic analysis of the autosomal recessive non-syndromic inherited retinitis pigmentosa
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10200129/
https://www.ncbi.nlm.nih.gov/pubmed/37267051
http://dx.doi.org/10.7759/cureus.37933
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