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在日本受试者中鉴定β细胞/肝脏(GLUT2)葡萄糖转运蛋白中的两种新型氨基酸多态性。

Identification of two novel amino acid polymorphisms in beta-cell/liver (GLUT2) glucose transporter in Japanese subjects.

作者信息

Shimada F, Makino H, Iwaoka H, Miyamoto S, Hashimoto N, Kanatsuka A, Bell G I, Yoshida S

机构信息

Second Department of Internal Medicine, Chiba University School of Medicine, Japan.

出版信息

Diabetologia. 1995 Feb;38(2):211-5. doi: 10.1007/BF00400096.

Abstract

The beta-cell/liver glucose transporter (GLUT2) gene was screened for mutations using single-strand conformation polymorphism analysis (SSCP) in 30 Japanese subjects with non-insulin dependent diabetes mellitus (NIDDM). Analysis of all exons and adjacent intron regions identified six SSCP polymorphisms, three of which resulted in amino acid substitutions: V101I, T110I and G519E. The V101I and G519E, substitutions represent new polymorphisms in this gene. The six polymorphisms were observed in both NIDDM and control groups and there were no significant differences in allele frequencies between groups. A portion of the insulin receptor substrate 1 gene in 30 NIDDM subjects and in normal control subjects was also screened for mutations. Two SSCP variants that change the sequence of the protein, delta S686/687 (deletion of the codons for serine-686 and 687) and G972R, were identified in two different NIDDM subjects, both whom were also heterozygous for the V101I polymorphisms in GLUT2. The GLUT2 and IRS1 amino acid polymorphisms did not show a simple pattern of co-inheritance with NIDDM in the families of these subjects suggesting that neither polymorphism is sufficient to cause NIDDM but may increase diabetes-susceptibility through their interaction with other loci and environmental factors.

摘要

利用单链构象多态性分析(SSCP)对30名日本非胰岛素依赖型糖尿病(NIDDM)患者的β细胞/肝脏葡萄糖转运体(GLUT2)基因进行突变筛查。对所有外显子和相邻内含子区域的分析确定了6个SSCP多态性,其中3个导致氨基酸替换:V101I、T110I和G519E。V101I和G519E替换代表该基因中的新多态性。在NIDDM组和对照组中均观察到这6种多态性,两组间等位基因频率无显著差异。还对30名NIDDM患者和正常对照者的胰岛素受体底物1基因的一部分进行了突变筛查。在两名不同的NIDDM患者中鉴定出两个改变蛋白质序列的SSCP变异体,δS686/687(丝氨酸-686和687密码子缺失)和G972R,这两名患者也是GLUT2中V101I多态性的杂合子。在这些受试者的家族中,GLUT2和IRS1氨基酸多态性与NIDDM并未表现出简单的共遗传模式,这表明这两种多态性都不足以导致NIDDM,但可能通过与其他基因座和环境因素的相互作用增加糖尿病易感性。

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