Genetic polymorphism of lysyl oxidase, glutathione S-transferase M1, glutathione-S-transferase T1, and glutathione S-transferase P1 genes as risk factors for lung cancer in Egyptian patients
Lung cancer is a lethal malignancy and is affected by genetic polymorphisms that contribute to an individual’s susceptibility to developing the disease. Several studies on lung cancer showed conflicting results. The aim of this study is to investigate whether individual or combined modifying effects...
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Veröffentlicht in: | Molecular biology reports 2021-05, Vol.48 (5), p.4221-4232 |
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Zusammenfassung: | Lung cancer is a lethal malignancy and is affected by genetic polymorphisms that contribute to an individual’s susceptibility to developing the disease. Several studies on lung cancer showed conflicting results. The aim of this study is to investigate whether individual or combined modifying effects of
LOX
G/A,
GSTM1
active/null,
GSTT1
active/null and
GSTP1
Ile/Val polymorphisms are related to the risk of lung cancer in relation to smoking in the Egyptian population. This study is a hospital-based case control study that included 200 patients and 200 control subjects. Genotyping of the 4 studied genes was determined by Multiplex PCR for
GSTM1
and
GSTT1
and Taq man SNP assay for
GSTP1
and
LOX
genes. The
LOX
G/A and
GSTP1
Ile/Val in both homozygous and heterozygous variants, and the
GSTM1
and
GSTT1
null genotype showed significant association with lung cancer. Combination between gene polymorphism and smoking increased the risk of developing cancer by 2.7 fold in the
LOX
GA+AA variant, 1.9 fold in the
GSTM1
null variant, 4.8 fold in the
GSTT1
null variant and 4.3 fold in the
GSTP1
Ile/Val+Val/Val variant. The genetic combination (
LOX
GA+AA/
GSTT1
active,
LOX
GG/GSTT1 null,
LOX
GA+AA/
GSTT1
null,
LOX
GA+AA/
GSTP1
Ile/Ile,
LOX
GG/
GSTP1
Ile/Val+Val/Val and
LOX
GA+AA/
GSTP1
Ile/Val+Val/Val) led to a higher lung cancer risk, compared to the reference group. The
LOX
GA/AA,
GSTM1
null
, GSTT1
null and
GSTP1
Ile/Val, Val/Val genotypes contributed to increased lung cancer susceptibility. To the best of our knowledge, this is the first study of
LOX
genotyping in the Egyptian population. The combination of genotypes increased the risk of cancer, indicating the importance of gene–gene interaction and giving a targeted preventive approach. |
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ISSN: | 0301-4851 1573-4978 |
DOI: | 10.1007/s11033-021-06436-4 |