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The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing

Detection and precise genomic mapping of balanced chromosomal abnormalities in patients with impaired fertility or a clinical phenotype represent a challenge for current cytogenomics owing to difficulties with precise breakpoint localization in the regions enriched for DNA repeats and high genomic v...

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Autores principales: Karamysheva, Tatyana V., Gayner, Tatyana A., Elisaphenko, Eugeny A., Trifonov, Vladimir A., Zakirova, Elvira G., Orishchenko, Konstantin E., Prokhorovich, Mariya A., Lopatkina, Maria E., Skryabin, Nikolay A., Lebedev, Igor N., Rubtsov, Nikolay B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775520/
https://www.ncbi.nlm.nih.gov/pubmed/36552011
http://dx.doi.org/10.3390/biomedicines10123255
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author Karamysheva, Tatyana V.
Gayner, Tatyana A.
Elisaphenko, Eugeny A.
Trifonov, Vladimir A.
Zakirova, Elvira G.
Orishchenko, Konstantin E.
Prokhorovich, Mariya A.
Lopatkina, Maria E.
Skryabin, Nikolay A.
Lebedev, Igor N.
Rubtsov, Nikolay B.
author_facet Karamysheva, Tatyana V.
Gayner, Tatyana A.
Elisaphenko, Eugeny A.
Trifonov, Vladimir A.
Zakirova, Elvira G.
Orishchenko, Konstantin E.
Prokhorovich, Mariya A.
Lopatkina, Maria E.
Skryabin, Nikolay A.
Lebedev, Igor N.
Rubtsov, Nikolay B.
author_sort Karamysheva, Tatyana V.
collection PubMed
description Detection and precise genomic mapping of balanced chromosomal abnormalities in patients with impaired fertility or a clinical phenotype represent a challenge for current cytogenomics owing to difficulties with precise breakpoint localization in the regions enriched for DNA repeats and high genomic variation in such regions. Here, we present a comprehensive cytogenomic approach to breakpoint mapping in a rare paracentric inversion on 10q (in a patient with oligoasthenoteratozoospermia and necrozoospermia) that does not affect other phenotype traits. Multicolor banding, chromosomal microarray analysis, chromosome microdissection with reverse painting, and single-copy sequencing of the rearranged chromosome were performed to determine the length and position of the inverted region as well as to rule out a genetic imbalance at the breakpoints. As a result, a paracentric 19.251 Mbp inversion at 10q22.2q23.3 was described. The most probable location of the breakpoints was predicted using the hg38 assembly. The problems of genetic counseling associated with enrichment for repeats and high DNA variability of usual breakpoint regions were discussed. Possible approaches for cytogenomic assessment of couples with balanced chromosome rearrangements and problems like reproductive failures were considered and suggested as useful part of effective genetic counseling.
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spelling pubmed-97755202022-12-23 The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing Karamysheva, Tatyana V. Gayner, Tatyana A. Elisaphenko, Eugeny A. Trifonov, Vladimir A. Zakirova, Elvira G. Orishchenko, Konstantin E. Prokhorovich, Mariya A. Lopatkina, Maria E. Skryabin, Nikolay A. Lebedev, Igor N. Rubtsov, Nikolay B. Biomedicines Article Detection and precise genomic mapping of balanced chromosomal abnormalities in patients with impaired fertility or a clinical phenotype represent a challenge for current cytogenomics owing to difficulties with precise breakpoint localization in the regions enriched for DNA repeats and high genomic variation in such regions. Here, we present a comprehensive cytogenomic approach to breakpoint mapping in a rare paracentric inversion on 10q (in a patient with oligoasthenoteratozoospermia and necrozoospermia) that does not affect other phenotype traits. Multicolor banding, chromosomal microarray analysis, chromosome microdissection with reverse painting, and single-copy sequencing of the rearranged chromosome were performed to determine the length and position of the inverted region as well as to rule out a genetic imbalance at the breakpoints. As a result, a paracentric 19.251 Mbp inversion at 10q22.2q23.3 was described. The most probable location of the breakpoints was predicted using the hg38 assembly. The problems of genetic counseling associated with enrichment for repeats and high DNA variability of usual breakpoint regions were discussed. Possible approaches for cytogenomic assessment of couples with balanced chromosome rearrangements and problems like reproductive failures were considered and suggested as useful part of effective genetic counseling. MDPI 2022-12-14 /pmc/articles/PMC9775520/ /pubmed/36552011 http://dx.doi.org/10.3390/biomedicines10123255 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
Karamysheva, Tatyana V.
Gayner, Tatyana A.
Elisaphenko, Eugeny A.
Trifonov, Vladimir A.
Zakirova, Elvira G.
Orishchenko, Konstantin E.
Prokhorovich, Mariya A.
Lopatkina, Maria E.
Skryabin, Nikolay A.
Lebedev, Igor N.
Rubtsov, Nikolay B.
The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title_full The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title_fullStr The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title_full_unstemmed The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title_short The Precise Breakpoint Mapping in Paracentric Inversion 10q22.2q23.3 by Comprehensive Cytogenomic Analysis, Multicolor Banding, and Single-Copy Chromosome Sequencing
title_sort precise breakpoint mapping in paracentric inversion 10q22.2q23.3 by comprehensive cytogenomic analysis, multicolor banding, and single-copy chromosome sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775520/
https://www.ncbi.nlm.nih.gov/pubmed/36552011
http://dx.doi.org/10.3390/biomedicines10123255
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