Stoffel M, Froguel P, Takeda J, Zouali H, Vionnet N, Nishi S, Weber I T, Harrison R W, Pilkis S J, Lesage S
Howard Hughes Medical Institute, University of Chicago, IL 60637.
Proc Natl Acad Sci U S A. 1992 Aug 15;89(16):7698-702. doi: 10.1073/pnas.89.16.7698.
DNA polymorphisms in the glucokinase gene have recently been shown to be tightly linked to early-onset non-insulin-dependent diabetes mellitus in approximately 80% of French families with this form of diabetes. We previously identified a nonsense mutation in exon 7 in one of these families and showed that it was the likely cause of glucose intolerance in this dominantly inherited disorder. Here we report the isolation and partial sequence of the human glucokinase gene and the identification of two missense mutations in exon 7, Thr-228----Met and Gly-261----Arg, that cosegregate with early-onset non-insulin-dependent diabetes mellitus. To assess the molecular mechanism by which mutations at these two sites may affect glucokinase activity, the crystal structure of the related yeast hexokinase B was used as a simple model for human beta-cell glucokinase. Computer-assisted modeling suggests that mutation of Thr-228 affects affinity for ATP and mutation of Gly-261 may alter glucose binding. The identification of mutations in glucokinase, a protein that plays an important role in hepatic and beta-cell glucose metabolism, indicates that early-onset non-insulin-dependent diabetes mellitus may be primarily a disorder of carbohydrate metabolism.
最近研究表明,在约80%患早发性非胰岛素依赖型糖尿病的法国家庭中,葡萄糖激酶基因中的DNA多态性与该病紧密相关。我们之前在其中一个家庭中鉴定出第7外显子的一个无义突变,并表明它可能是这种显性遗传疾病中葡萄糖不耐受的病因。在此我们报告人葡萄糖激酶基因的分离、部分序列以及第7外显子中两个错义突变(Thr-228→Met和Gly-261→Arg)的鉴定,这两个突变与早发性非胰岛素依赖型糖尿病共分离。为评估这两个位点的突变可能影响葡萄糖激酶活性的分子机制,将相关酵母己糖激酶B的晶体结构用作人β细胞葡萄糖激酶的简单模型。计算机辅助建模表明,Thr-228的突变影响对ATP的亲和力,而Gly-261的突变可能改变葡萄糖结合。葡萄糖激酶在肝脏和β细胞葡萄糖代谢中起重要作用,该蛋白中突变的鉴定表明,早发性非胰岛素依赖型糖尿病可能主要是一种碳水化合物代谢紊乱。