Association of two glyoxalase I gene polymorphisms with nephropathy and retinopathy in Type 2 diabetes

被引:0
作者
J. C. Wu
X. H. Li
Y. D. Peng
J. B. Wang
J. F. Tang
Y. F. Wang
机构
[1] Shanghai Jiao Tong University Affiliated First People’s Hospital,Department of Endocrinology and Metabolism
来源
Journal of Endocrinological Investigation | 2011年 / 34卷
关键词
Type 2 diabetes; nephropathy; retinopathy; single nucleotide polymorphism; glyoxalase I;
D O I
暂无
中图分类号
学科分类号
摘要
Background: Glyoxalase I (GLO1), which is the major enzyme that catalyzes the metabolism of methylglyoxal (MG), may play an important role in the pathogenesis of diabetic microvascular complications. Aim: To investigate whether the C-7T and A419C polymorphisms of the GLO1 gene are associated with nephropathy and retinopathy in Chinese Type 2 diabetic patients. Subjects and methods: A total of 364 Type 2 diabetic patients and 301 healthy controls were enroled in the study. Diabetic microvascular complications were determined by urinary albumin excretion measurements and ophthalmological examinations. Genetic analyses were performed using either Taqman PCR or direct sequencing. The effect of C-7T polymorphism on promoter activity was measured by reporter gene assays. Results: The albumin/creatinine ratio (ACR) and prevalence of nephropathy and retinopathy were significantly higher in diabetic patients with GLO1 -7CC genotype than in patients with -7CT and -7TT genotypes (p=0.02, p=0.02, and p=0.04, respectively). The 7CC genotype is independently associated with ACR (β=0.13, p=0.01) and the risk for retinopathy [odds ratio (OR): 2.30, 95% confidence interval (CI): 1.25–4.24, p<0.01]. The luciferase activity of the -7T promoter was higher than that of the -7C promoter (13.2±0.2 vs 11.7±0.8, p=0.04). No differences were found between ACR and the prevalence of nephropathy and retinopathy for A419C polymorphism in Type 2 diabetic patients. Conclusions: GLO1 C-7T polymorphism alters promoter activity and confers susceptibility to nephropathy and retinopathy to Type 2 diabetic patients.
引用
收藏
页码:e343 / e348
相关论文
共 112 条
[11]  
Mohan V(1998)Overexpression of glyoxalase-I in bovine endothelial cells inhibits intracellular advanced glycation endproduct formation and prevents hyperglycemia-induced increases in macromolecular endocytosis J Clin Invest 101 1142-7
[12]  
Kalapos MP(2008)Reversal of hyperglycemia-induced angiogenesis deficit of human endothelial cells by overexpression of glyoxalase 1 in vitro Ann N Y Acad Sci 1126 262-4
[13]  
Goh SY(2006)Glyoxalase 1 is critical for human retinal capillary pericyte survival under hyperglycemic conditions J Biol Chem 281 11864-71
[14]  
Cooper ME(2008)A419C (E111A) polymorphism of the glyoxalase I gene and vascular complications in chronic hemodialysis patient Ann N Y Acad Sci 1126 268-71
[15]  
Huebschmann AG(2004)Common polymorphisms in the glyoxalase-1 gene and their association with pro-thrombotic factors Diab Vasc Dis Res 1 34-9
[16]  
Regensteiner JG(1994)Glyoxalase system in clinical diabetes mellitus and correlation with diabetic complications Clin Sci (Lond) 87 21-9
[17]  
Vlassara H(1994)Binding and modification of proteins by methylglyoxal under physiological conditions. A kinetic and mechanistic study with N alpha-acetylarginine, N alpha-acetylcysteine, and N alpha-acetyllysine, and bovine serum albumin J Biol Chem 269 32299-305
[18]  
Reusch JE(2006)Advanced glycation end products: sparking the development of diabetic vascular injury Circulation 114 597-605
[19]  
Shimoike T(1997)The relationship between accumulation of advanced glycation end products and expression of vascular endothelial growth factor in human diabetic retinas Diabetologia 40 764-9
[20]  
Inoguchi T(1993)Maillard reaction products and their relation to complications in insulin-dependent diabetes mellitus J Clin Invest 91 2470-8