Resequencing of the characterised CTGF gene to identify novel or known variants, and analysis of their association with diabetic nephropathy

被引:10
作者
McKnight, AJ
Savage, DA
Patterson, CC
Brady, HR
Maxwell, AP
机构
[1] Queens Univ Belfast, Nephrol Res Grp, Reg Genet Ctr, Belfast City Hosp, Belfast BT9 7AB, Antrim, North Ireland
[2] Queens Univ Belfast, Dept Epidemiol & Publ Hlth, Belfast, Antrim, North Ireland
[3] Dublin Mol Med Ctr, Conway Inst, Dublin, Ireland
关键词
association; connective tissue growth factor; nephropathy; gene; SNP; type; 1; diabetes;
D O I
10.1007/s10038-006-0368-7
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Connective tissue growth factor (CTGF) has been implicated in the pathogenesis of diabetic nephropathy; however, to date there have been no reports of genomic analysis on this gene. The CTGF gene was comprehensively screened using WAVE (dHPLC) technology and direct capillary sequencing. Single nucleotide polymorphisms (SNPs) with minor allele frequencies greater than 5% were further investigated in an Irish, type I diabetic population. The case-control collection consisted of 272 diabetics with nephropathy and 367 non-nephropathic diabetic controls who were genotyped using TaqMan and Pyrosequencing technologies. Ten SNPs were identified, of which seven were novel. Four SNPs are located in the promoter, one in exon 2, two in intron 2 and three in the 3' untranslated region. Based on in silico analysis, three SNPs, c.-650G > C, c.-484T > C and c.247G > C, are potentially functional. Subsequent statistical analysis for common SNPs, c. -650G > C, c.-420InsT, c.-220G > C, c.289+94T > C and c.289+98T > C, in the case-control study revealed no significant differences in genotype or allele frequencies. CTGF has emerged as a biological candidate gene for diabetic nephropathy; however, no significant association was detected between common CTGF SNPs and nephropathy in this population.
引用
收藏
页码:383 / 386
页数:4
相关论文
共 20 条
[1]   Glomerular mRNAs in human type 1 diabetes: Biochemical evidence for microalbuminuria as a manifestation of diabetic nephropathy [J].
Adler, SG ;
Kang, SW ;
Feld, S ;
Cha, DR ;
Barba, L ;
Striker, L ;
Striker, G ;
Riser, BL ;
LaPage, T ;
Nast, CC .
KIDNEY INTERNATIONAL, 2001, 60 (06) :2330-2336
[2]   Identification of human ccn2*(connective tissue growth factor) promoter polymorphisms [J].
Blom, IE ;
van Dijk, AJ ;
de Weger, RA ;
Tilanus, MGJ ;
Goldschmeding, R .
JOURNAL OF CLINICAL PATHOLOGY-MOLECULAR PATHOLOGY, 2001, 54 (03) :192-196
[3]   Matlnspector and beyond: promoter analysis based on transcription factor binding sites [J].
Cartharius, K ;
Frech, K ;
Grote, K ;
Klocke, B ;
Haltmeier, M ;
Klingenhoff, A ;
Frisch, M ;
Bayerlein, M ;
Werner, T .
BIOINFORMATICS, 2005, 21 (13) :2933-2942
[4]   Inference on haplotype effects in case-control studies using unphased genotype data [J].
Epstein, MP ;
Satten, GA .
AMERICAN JOURNAL OF HUMAN GENETICS, 2003, 73 (06) :1316-1329
[5]   Therapeutic approaches to organ fibrosis [J].
Franklin, TJ .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 1997, 29 (01) :79-89
[6]   Urinary connective tissue growth factor excretion in patients with type 1 diabetes and nephropathy [J].
Gilbert, RE ;
Akdeniz, A ;
Weitz, S ;
Usinger, WR ;
Molineaux, C ;
Jones, SE ;
Langham, RG ;
Jerums, G .
DIABETES CARE, 2003, 26 (09) :2632-2636
[7]   Static pressure regulates connective tissue growth factor expression in human mesangial cells [J].
Hishikawa, K ;
Oemar, BS ;
Nakaki, T .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (20) :16797-16803
[8]  
LEWONTIN RC, 1964, GENETICS, V49, P49
[9]  
MARTINERIE C, 1992, ONCOGENE, V7, P2529
[10]   A CATALOG OF SPLICE JUNCTION SEQUENCES [J].
MOUNT, SM .
NUCLEIC ACIDS RESEARCH, 1982, 10 (02) :459-472