Cargando…

DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture

Polymorphisms in Lys939Gln XPC gene may diminish DNA repair capacity, eventually increasing the risk of carcinogenesis. The aim of the present study was to evaluate the significance of polymorphism Lys939Gln in XPC gene in patients with mitral chordae tendinea rupture (MCTR). Twenty-one patients wit...

Descripción completa

Detalles Bibliográficos
Autores principales: Kalayci Yigin, Aysel, Bulent Vatan, Mehmet, Akdemir, Ramazan, Necati Murat Aksoy, Muhammed, Cakar, Mehmet Akif, Kilic, Harun, Erkorkmaz, Unal, Karacan, Keziban, Kaleli, Suleyman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4641204/
https://www.ncbi.nlm.nih.gov/pubmed/26604426
http://dx.doi.org/10.1155/2015/825020
_version_ 1782400159052726272
author Kalayci Yigin, Aysel
Bulent Vatan, Mehmet
Akdemir, Ramazan
Necati Murat Aksoy, Muhammed
Cakar, Mehmet Akif
Kilic, Harun
Erkorkmaz, Unal
Karacan, Keziban
Kaleli, Suleyman
author_facet Kalayci Yigin, Aysel
Bulent Vatan, Mehmet
Akdemir, Ramazan
Necati Murat Aksoy, Muhammed
Cakar, Mehmet Akif
Kilic, Harun
Erkorkmaz, Unal
Karacan, Keziban
Kaleli, Suleyman
author_sort Kalayci Yigin, Aysel
collection PubMed
description Polymorphisms in Lys939Gln XPC gene may diminish DNA repair capacity, eventually increasing the risk of carcinogenesis. The aim of the present study was to evaluate the significance of polymorphism Lys939Gln in XPC gene in patients with mitral chordae tendinea rupture (MCTR). Twenty-one patients with MCTR and thirty-seven age and sex matched controls were enrolled in the study. Genotyping of XPC gene Lys939Gln polymorphism was carried out using polymerase chain reaction- (PCR-) restriction fragment length polymorphism (RFLP). The frequencies of the heterozygote genotype (Lys/Gln-AC) and homozygote genotype (Gln/Gln-CC) were significantly different in MCTR as compared to control group, respectively (52.4% versus 43.2%, p = 0.049; 38.15% versus 16.2%, p = 0.018). Homozygote variant (Gln/Gln) genotype was significantly associated with increased risk of MCTR (OR = 2.059; 95% CI: 1.097–3.863; p = 0.018). Heterozygote variant (Lys/Gln) genotype was also highly significantly associated with increased risk of MCTR (OR = 1.489; 95% CI: 1.041–2.129; p = 0.049). The variant allele C was found to be significantly associated with MCTR (OR = 1.481; 95% CI: 1.101–1.992; p = 0.011). This study has demonstrated the association of XPC gene Lys939Gln polymorphism with MCTR, which is significantly associated with increased risk of MCTR.
format Online
Article
Text
id pubmed-4641204
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-46412042015-11-24 DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture Kalayci Yigin, Aysel Bulent Vatan, Mehmet Akdemir, Ramazan Necati Murat Aksoy, Muhammed Cakar, Mehmet Akif Kilic, Harun Erkorkmaz, Unal Karacan, Keziban Kaleli, Suleyman Dis Markers Research Article Polymorphisms in Lys939Gln XPC gene may diminish DNA repair capacity, eventually increasing the risk of carcinogenesis. The aim of the present study was to evaluate the significance of polymorphism Lys939Gln in XPC gene in patients with mitral chordae tendinea rupture (MCTR). Twenty-one patients with MCTR and thirty-seven age and sex matched controls were enrolled in the study. Genotyping of XPC gene Lys939Gln polymorphism was carried out using polymerase chain reaction- (PCR-) restriction fragment length polymorphism (RFLP). The frequencies of the heterozygote genotype (Lys/Gln-AC) and homozygote genotype (Gln/Gln-CC) were significantly different in MCTR as compared to control group, respectively (52.4% versus 43.2%, p = 0.049; 38.15% versus 16.2%, p = 0.018). Homozygote variant (Gln/Gln) genotype was significantly associated with increased risk of MCTR (OR = 2.059; 95% CI: 1.097–3.863; p = 0.018). Heterozygote variant (Lys/Gln) genotype was also highly significantly associated with increased risk of MCTR (OR = 1.489; 95% CI: 1.041–2.129; p = 0.049). The variant allele C was found to be significantly associated with MCTR (OR = 1.481; 95% CI: 1.101–1.992; p = 0.011). This study has demonstrated the association of XPC gene Lys939Gln polymorphism with MCTR, which is significantly associated with increased risk of MCTR. Hindawi Publishing Corporation 2015 2015-10-28 /pmc/articles/PMC4641204/ /pubmed/26604426 http://dx.doi.org/10.1155/2015/825020 Text en Copyright © 2015 Aysel Kalayci Yigin et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kalayci Yigin, Aysel
Bulent Vatan, Mehmet
Akdemir, Ramazan
Necati Murat Aksoy, Muhammed
Cakar, Mehmet Akif
Kilic, Harun
Erkorkmaz, Unal
Karacan, Keziban
Kaleli, Suleyman
DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title_full DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title_fullStr DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title_full_unstemmed DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title_short DNA Repair Gene Polymorphism and the Risk of Mitral Chordae Tendineae Rupture
title_sort dna repair gene polymorphism and the risk of mitral chordae tendineae rupture
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4641204/
https://www.ncbi.nlm.nih.gov/pubmed/26604426
http://dx.doi.org/10.1155/2015/825020
work_keys_str_mv AT kalayciyiginaysel dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT bulentvatanmehmet dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT akdemirramazan dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT necatimurataksoymuhammed dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT cakarmehmetakif dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT kilicharun dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT erkorkmazunal dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT karacankeziban dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture
AT kalelisuleyman dnarepairgenepolymorphismandtheriskofmitralchordaetendineaerupture