Literature DB >> 21734345

Combined analysis of EPHX1, GSTP1, GSTM1 and GSTT1 gene polymorphisms in relation to chronic obstructive pulmonary disease risk and lung function impairment.

Ramzi Lakhdar1, Sabri Denden, Jalel Knani, Nadia Leban, Houria Daimi, Mohsen Hassine, Gérard Lefranc, Jemni Ben Chibani, Amel Haj Khelil.   

Abstract

Smoking is considered as the major causal factor of chronic obstructive pulmonary disease (COPD). Nevertheless, a minority of chronic heavy cigarette smokers develops COPD. This suggests important contribution of other factors such as genetic predisposing. Our objective was to investigate combined role of EPHX1, GSTP1, M1 and T1 gene polymorphisms in COPD risk, its phenotypes and lung function impairment. Prevalence of EPHX1, GSTP1, M1 and T1 gene polymorphisms were assessed in 234 COPD patients and 182 healthy controls from Tunisia. Genotypes of EPHX1 (Tyr113His; His139Arg) and GSTP1 (Ile105Val; Ala114Val) polymorphisms were performed by PCR-RFLP, while the deletion in GSTM1 and GSTT1 genes was determined using multiplex PCR. Analysis of combinations showed a significant association of 113His/His EPHX1/null-GSTM1 (OR=4.07) and null-GSTM1/105Val/Val GSTP1 (OR =3.56) genotypes with increased risk of COPD (respectively P=0.0094 and P=0.0153). The null-GSTM1/ null-GSTT1, 105Val/Val GSTP1/null GSTT1, 113His/His EPHX1/null-GSTM1 and null-GSTM1/105Val/Val GSTP1 genotypes were related to emphysema (respectively P=0.01; P=0.009; P=0.008 and P=0.001). Combination of 113His/His EPHX1/null-GSTM1 genotypes showed a significant association with the decrease of Δ FEV1 in patients (P =0.028).In conclusion, our results suggest combined EPHX1, GSTP1, GSTM1 and GSTT1 genetic polymorphisms may play a significant role in the development of COPD, emphysema and decline of the lung function.

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Year:  2011        PMID: 21734345      PMCID: PMC3825482          DOI: 10.3233/DMA-2011-0782

Source DB:  PubMed          Journal:  Dis Markers        ISSN: 0278-0240            Impact factor:   3.434


  8 in total

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5.  RNAseq analysis of bronchial epithelial cells to identify COPD-associated genes and SNPs.

Authors:  Jiyoun Yeo; Diego A Morales; Tian Chen; Erin L Crawford; Xiaolu Zhang; Thomas M Blomquist; Albert M Levin; Pierre P Massion; Douglas A Arenberg; David E Midthun; Peter J Mazzone; Steven D Nathan; Ronald J Wainz; Patrick Nana-Sinkam; Paige F S Willey; Taylor J Arend; Karanbir Padda; Shuhao Qiu; Alexei Federov; Dawn-Alita R Hernandez; Jeffrey R Hammersley; Youngsook Yoon; Fadi Safi; Sadik A Khuder; James C Willey
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Review 6.  The etiologic origins for chronic obstructive pulmonary disease.

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7.  The Cumulative Effect of Gene-Gene Interactions Between GSTM1, CHRNA3, CHRNA5 and SOD3 Gene Polymorphisms Combined with Smoking on COPD Risk.

Authors:  Chimedlkhamsuren Ganbold; Jambaldorj Jamiyansuren; Ariuntungalag Tumurbaatar; Agarzandan Bayarmaa; Tseepil Enebish; Ichinnorov Dashtseren; Sarantuya Jav
Journal:  Int J Chron Obstruct Pulmon Dis       Date:  2021-10-18

8.  Exploring the interaction among EPHX1, GSTP1, SERPINE2, and TGFB1 contributing to the quantitative traits of chronic obstructive pulmonary disease in Chinese Han population.

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Journal:  Hum Genomics       Date:  2016-05-18       Impact factor: 4.639

  8 in total

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