Cheyssac Claire, Lecoeur Cécile, Dechaume Aurélie, Bibi Amina, Charpentier Guillaume, Balkau Beverley, Marre Michel, Froguel Philippe, Gibson Fernando, Vaxillaire Martine
CNRS UMR 8090, Institut de Biologie de Lille, Institut Pasteur, 59019 Lille, France.
BMC Med Genet. 2006 May 5;7:44. doi: 10.1186/1471-2350-7-44.
The protein tyrosine phosphatase-1B, a negative regulator for insulin and leptin signalling, potentially modulates glucose and energy homeostasis. PTP1B is encoded by the PTPN1 gene located on chromosome 20q13 showing linkage with type 2 diabetes (T2D) in several populations. PTPN1 gene variants have been inconsistently associated with T2D, and the aim of our study was to investigate the effect of PTPN1 genetic variations on the risk of T2D, obesity and on the variability of metabolic phenotypes in the French population.
Fourteen single nucleotide polymorphisms (SNPs) spanning the PTPN1 locus were selected from previous association reports and from HapMap linkage disequilibrium data. SNPs were evaluated for association with T2D in two case-control groups with 1227 cases and 1047 controls. Association with moderate and severe obesity was also tested in a case-control study design. Association with metabolic traits was evaluated in 736 normoglycaemic, non-obese subjects from a general population. Five SNPs showing a trend towards association with T2D, obesity or metabolic parameters were investigated for familial association.
From 14 SNPs investigated, only SNP rs914458, located 10 kb downstream of the PTPN1 gene significantly associated with T2D (p = 0.02 under a dominant model; OR = 1.43 [1.06-1.94]) in the combined sample set. SNP rs914458 also showed association with moderate obesity (allelic p = 0.04; OR = 1.2 [1.01-1.43]). When testing for association with metabolic traits, two strongly correlated SNPs, rs941798 and rs2426159, present multiple consistent associations. SNP rs2426159 exhibited evidence of association under a dominant model with glucose homeostasis related traits (p = 0.04 for fasting insulin and HOMA-B) and with lipid markers (0.02 = p = 0.04). Moreover, risk allele homozygotes for this SNP had an increased systolic blood pressure (p = 0.03). No preferential transmission of alleles was observed for the SNPs tested in the family sample.
In our study, PTPN1 variants showed moderate association with T2D and obesity. However, consistent associations with metabolic variables reflecting insulin resistance and dyslipidemia are found for two intronic SNPs as previously reported. Thus, our data indicate that PTPN1 variants may modulate the lipid profile, thereby influencing susceptibility to metabolic disease.
蛋白酪氨酸磷酸酶-1B是胰岛素和瘦素信号通路的负调节因子,可能参与调节葡萄糖和能量稳态。PTP1B由位于20号染色体q13上的PTPN1基因编码,在多个群体中显示出与2型糖尿病(T2D)存在连锁关系。PTPN1基因变异与T2D的关联并不一致,本研究旨在探讨PTPN1基因变异对法国人群T2D风险、肥胖以及代谢表型变异性的影响。
从先前的关联研究报告和HapMap连锁不平衡数据中选取了14个跨越PTPN1基因座的单核苷酸多态性(SNP)。在两个病例对照研究组中对这些SNP与T2D的关联性进行评估,其中病例组1227例,对照组1047例。还采用病例对照研究设计测试了这些SNP与中度和重度肥胖的关联性。在来自普通人群的736名血糖正常、非肥胖的受试者中评估了这些SNP与代谢性状的关联性。对5个显示出与T2D、肥胖或代谢参数有相关趋势的SNP进行了家系关联性研究。
在检测的14个SNP中,只有位于PTPN1基因下游10 kb处的SNP rs914458在合并样本集中与T2D显著相关(显性模型下p = 0.02;OR = 1.43 [1.06 - 1.94])。SNP rs914458也显示出与中度肥胖相关(等位基因p = 0.04;OR = 1.2 [1.01 - 1.43])。在检测与代谢性状的关联性时,两个高度相关的SNP,rs941798和rs2426159,呈现出多个一致的关联性。SNP rs2426159在显性模型下显示出与葡萄糖稳态相关性状(空腹胰岛素和HOMA - B的p = 0.04)以及脂质标志物(0.02≤p≤0.04)存在关联证据。此外,该SNP的风险等位基因纯合子收缩压升高(p = 0.03)。在家系样本中测试的SNP未观察到等位基因的优先传递。
在我们的研究中,PTPN1变异与T2D和肥胖呈中度关联。然而,如先前报道,两个内含子SNP与反映胰岛素抵抗和血脂异常的代谢变量存在一致的关联。因此,我们的数据表明PTPN1变异可能调节脂质谱,从而影响对代谢疾病的易感性。