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Research Reports

Polymorphism of GST and FTO Genes in Risk Prediction of Cataract among a North Indian Population

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Pages 19-24 | Received 10 Jan 2014, Accepted 16 Mar 2014, Published online: 22 Apr 2014

References

  • Krishnaiah S, Vilas K, Shamanna BR, et al. Smoking and its association with cataract: results of the Andhra Pradesh Eye Disease Study from India. Invest Ophthalmol Vis Sci 2005;46:58–65
  • Nirmalan PK, Krishnadas R, Ramakrishnan R, et al. Lens opacities in a rural population of southern India: the Aravind Comprehensive Eye Study. Invest Ophthalmol Vis Sci 2003;44:4639–4643
  • Vashist P, Talwar B, Gogoi M, et al. Prevalence of cataract in an older population in India: the India Study of Age-related Eye Disease. Ophthalmology 2011;118:272–278
  • McCarty CA, Taylor HR. A review of the epidemiologic evidence linking ultraviolet radiation and cataracts. Dev Ophthalmol 2002;35:21–31
  • Tan JS, Wang JJ, Younan C, et al. Smoking and the long-term incidence of cataract: the Blue Mountains Eye Study. Ophthalmic Epidemiol 2008;15:155–161
  • Wang S, Wang JJ, Wong TY. Alcohol and eye diseases. Surv Ophthalmol 2008;53:512–525
  • Hiratsuka Y, Li G. Alcohol and eye diseases: a review of epidemiologic studies. J Stud Alcohol 2001;62:397–402
  • Klein BE, Klein R, Lee KE, Danforth LG. Drug use and five-year incidence of age-related cataracts: the Beaver Dam Eye Study. Ophthalmology 2001;108:1670–1674
  • Hejtmancik JF, Kantorow M. Molecular genetics of age-related cataract. Exp Eye Res 2004;79:3–9
  • Shiels A, Hejtmancik JF. Genetic origins of cataract. Arch Ophthalmol 2007;125:165–173
  • Ottonello S, Foroni C, Carta A, et al. Oxidative stress and age-related cataract. Ophthalmologica 2000; 214:78–85
  • Vinson JA. Oxidative stress in cataracts. Pathophysiology 2006;13:151–162
  • Giblin FJ. Glutathione: a vital lens antioxidant. J Ocul Pharmacol Ther 2000;16:121–135
  • Ganea E, Harding JJ. Glutathione-related enzymes and the eye. Curr Eye Res 2006;31:1–11
  • Saadat M, Farvardin-Jahroni M, Saadat H. The null genotype of glutathione-S-transferase M1 is associated with the senile cataract susceptibility in non smoker females. Biochem Biophys Res Commun 2004; 319(4):1287--1291
  • Strange RC, Spiteri MA, Ramachandran S, Fryer AA. Glutathione-S-transferase family of enzymes. Mutat Res 2001;482:21–26
  • Zhong SL, Zhou SF, Chen X, et al. Relationship between genotype and enzyme activity of glutathione S-transferases M1 and P1 in Chinese. Eur J Pharm Sci 2006;28:77–85
  • Marsili S, Salganik RI, Albright CD, et al. Cataract formation in a strain of rats selected for high oxidative stress. Exp Eye Res 2004;79:595–612
  • Unal M, Guven M, Devranoglu K, et al. Glutathione S transferase M1 and T1 genetic polymorphisms are related to the risk of primary open-angle glaucoma: a study in a Turkish population. Br J Ophthalmol 2007;91:527–530
  • Harada S, Misawa S, Nakamura T, et al. Detection of GST1 gene deletion by the polymerase chain reaction and its possible correlation with stomach cancer in Japanese. Hum Genet 1992;90:62–64
  • Pemble S, Schroeder KR, Spencer SR, et al. Human glutathione Stransferasetheta (GSTT1): cDNA cloning and the characterization of a genetic polymorphism. Biochem J 1994;300:271–276
  • Whitbread AK, Tetlow N, Eyre HJ, et al. Characterization of the human omega class glutathione transferase genes and associated polymorphisms. Pharmacogenetics 2003;13:131–144
  • Board PG, Baker RT, Chelvanayagam G, Jermiin LS. Zeta, a novel class of glutathione transferases in a range of species from plants to humans. Biochem J 1997;328:929–935
  • Güven M, Gorgun E, Unal M, et al. Glutathione S-transferase M1, GSTT1 and GSTP1 genetic polymorphisms and the risk of age-related macular degeneration. Ophthalmic Res 2011;46:31–37
  • Barroso Duarte EC, Da Silva MS, et al. GSTT1 polymorphism and oral leukoplakia. Anticancer Res 2006;26:427--430
  • Sun L, Xi B, Yu L, et al. Association of glutathione S-transferases polymorphisms (GSTM1 and GSTT1) with senile cataract: a meta-analysis. Invest Ophthalmol Vis Sci 2010;51:6381–6386
  • Saadat M, Farvardin-Jahromi M. Occupational sunlight exposure, polymorphism of glutathione S-transferase M1, and senile cataract risk. Occup Environ Med 2006;63:503–504
  • Hinney A. Genome wide association (GWA) study for early onset extreme obesity supports the role of fat mass and obesity associated gene (FTO) variants. PloS ONE 2007;2:e1361
  • Scuteri A, Sanna S, Chen WM, et al. Genome-wide association scan shows genetic variants in the FTO gene are associated with obesity-related traits. Plos Genet 2007;3:1200–1210
  • Cheung N, Wong TY. Obesity and eye diseases. Surv Ophthalmol 2007;52:180–195
  • Weintraub JM, Willett WC, Rosner B, et al. A prospective study of the relationship between body mass index and cataract extraction among US women and men. Int J Obes Relat Metab Disord 2002;26:1588–1595
  • Schaumberg DA, Glynn RJ, Christen WG, et al. Relations of body fat distribution and height with cataract in men. Am J Clin Nutr 2000;72:1495–1502
  • Fredriksson R, Hagglund M, Olszewski PK, et al. The obesity gene, FTO, is of ancient origin, up-regulated during food deprivation and expressed in neurons of feeding-related nuclei of the brain. Endocrinology 2008;149:2062–2071
  • Stratigopoulos G, Padilla SL, Leduc CA, et al. Regulation of Fto/Ftm gene expression in mice and humans. Am J Physiol – Regulatory Integr Compar Physiol 2008;294:R1185–R1196
  • Wahlen K, Sjolin E, Hoffstedt J. The common rs9939609 gene variant of the fat mass- and obesity-associated gene FTO is related to fat cell lipolysis. J Lipid Res 2008;49:607–661
  • Frayling TM, Timpson NJ, Weedon MN, et al. A common variant in the FTO gene is associated with body mass index and predisposes to childhood and adult obesity. Science 2007;316:889–894
  • Dina C, Meyre D, Gallina S, et al. Variation in FTO contributes to childhood obesity and severe adult obesity. Nat Genet 2007;39:724–726
  • Sambrook J, Frisch EF, Maniatis T. Molecular cloning; a laboratory manual. 2nd edition. New York: Cold Sping Harbor Laboratory Press; 1989:9.14–9.19
  • Arand M, Muhlbauer R, Hengstler J, et al. Multiplex polymerase chain reaction protocol for the simultaneous analysis of the glutathione S-transferase GSTM1 and GSTT1 polymorphisms. Anal Biochem 1996;236:184–186
  • Hao K, Niu T, Sangokoya C, et al. SNP kit: an efficient approach to systematic evaluation of candidate single nucleotide polymorphisms in public databases. Biotechniques 2002;33:822–828
  • Brian G, Taylor H. Cataract blindness – challenges for the 21st century. Bull World Health Organ 2001;79:249–256
  • Izzotti A, Sacca SC, Cartiglia C, De Flora S. Oxidative deoxyribonucleic acid damage in the eyes of glaucoma patients. Am J Med 2003;114:638–646
  • Jansson M, Rada A, Tomic L, et al. Analysis of the glutathione S-transferase M1 gene using pyrosequencing and multiplex PCR – no evidence of association to glaucoma. Exp Eye Res 2003;77:239–243
  • Glass DC, Gray CN, Jolley DJ, et al. Leukemia risk associated with low-level benzene exposure. Epidemiology 2003;14:569–577
  • Oz O, Aras Ates N, Tamer L, et al. Glutathione S-transferase M1, T1, and P1 gene polymorphism in exudative age-related macular degeneration: a preliminary report. Eur J Ophthalmol 2006;16:105–110
  • Hao Y, He S, Gu Z, et al. Relationship between GSTM1 genotype and susceptibility to senile cataract. Zhonghua Yan Ke Za Zhi 1999;35:104–106
  • Juronen E, Tasa G, Veromann S, et al. Polymorphic glutathione S-transferases as genetic risk factors for senile cortical cataract in Estonians. Invest Ophthalmol Vis Sci 2000;41:2262–2267
  • Güven M, Unal M, Sarici A, et al. Glutathione-S-transferase M1 and T1 genetic polymorphisms and the risk of cataract development: a study in the Turkish population. Curr Eye Res 2007;32:447–454
  • Jiang Z, Liang K, Zhang Q, Tao L. Glutathione S-transferases polymorphisms confer susceptibility to senile cortical cataract in the Han Chinese population. Mol Vis 2012;18:1247–1252
  • Saadat I, Ahmadi Z, Farvardin-Jahromi M, Saadat M. Association between cataract and genetic polymorphisms of GSTM1, GSTT1, and GSTO2 with respect of work place. Mol Vis 2012;18:1996–2000
  • Haslam DW, James WP. Obesity. Lancet 2005;366:1197–1209
  • Leske MC, Wu SY, Hennis A. Diabetes, hypertension, and central obesity as cataract risk factors in a black population. The Barbados Eye Study. Ophthalmology 1999;106:35–41
  • Kuang TM, Tsai SY, Hsu WM, et al. Body mass index and age-related cataract: the Shihpai Eye Study. Arch Ophthalmol 2005;123:1109–1114
  • Leske MC, Connell AM, Wu SY, et al. Risk factors for open-angle glaucoma. The Barbados Eye Study. Arch Ophthalmol 1995;113:918–924
  • van Leiden HA, Dekker JM, Moll AC, et al. Blood pressure, lipids, and obesity are associated with retinopathy: the Hoorn study. Diabet Care 2002;25:1320–1325
  • Clemons TE, Milton RC, Klein R, et al.; Age-Related Eye Disease Study Research Group. Risk factors for the incidence of advanced age-related macular degeneration in the Age-Related Eye Disease Study (AREDS). AREDS report no. 19. Ophthalmology 2005;112:533–539
  • Hiller R, Podgor MJ, Sperduto RD, et al. A longitudinal study of body mass index and lens opacities. The Framingham Studies. Ophthalmology 1998;105:1244–1250

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