首页> 美国卫生研究院文献>Biochemical Journal >Cell-biological assessment of human glucokinase mutants causing maturity-onset diabetes of the young type 2 (MODY-2) or glucokinase-linked hyperinsulinaemia (GK-HI).
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Cell-biological assessment of human glucokinase mutants causing maturity-onset diabetes of the young type 2 (MODY-2) or glucokinase-linked hyperinsulinaemia (GK-HI).

机译:导致2型年轻糖尿病(MODY-2)或葡萄糖激酶相关性高胰岛素血症(GK-HI)的成熟型糖尿病人糖激酶突变体的细胞生物学评估。

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摘要

Mutations in the glucokinase (GK) gene cause type-2 maturity-onset diabetes of the young type 2 (MODY-2) and GK-linked hyperinsulinaemia (GK-HI). Recombinant adenoviruses expressing the human wild-type islet GK or one of four mutant forms of GK, (the MODY-2 mutants E70K, E300K and V203A and the GK-HI mutant V455M) were transduced into glucose-responsive insulin-secreting beta-HC9 cells and tested functionally in order to initiate the first analysis in vivo of recombinant wild-type and mutant human islet GK. Kinetic analysis of wild-type human GK showed that the glucose S(0. 5) and Hill coefficient were similar to previously published data in vitro (S(0.5) is the glucose level at the half-maximal rate). E70K had half the glucose affinity of wild-type, but similar enzyme activity. V203A demonstrated decreased catalytic activity and an 8-fold increase in glucose S(0.5) when compared with wild-type human islet GK. E300K had a glucose S(0.5) similar to wild-type but a 10-fold reduction in enzyme activity. E300K mRNA levels were comparable with wild-type GK mRNA levels, but Western-blot analyses demonstrated markedly reduced levels of immunologically detectable protein, consistent with an instability mutation. V455M was just as active as wild-type GK, but with a markedly reduced S(0.5). The effects of the different GK mutants on glucose-stimulated insulin release support the kinetic and expression data. These experiments show the utility of a combined genetic, biochemical and cell-biological approach to the quantification of functional and structural changes of human GK that result from MODY-2 and GK-HI mutations.
机译:葡萄糖激酶(GK)基因的突变会导致2型年轻的2型成熟性糖尿病(MODY-2)和GK相关的高胰岛素血症(GK-HI)。将表达人类野生型胰岛GK或GK四种突变形式之一的重组腺病毒(MODY-2突变体E70K,E300K和V203A和GK-HI突变体V455M)转化为分泌葡萄糖的胰岛素分泌型β-HC9对细胞进行功能测试,以启动体内重组野生型和突变型人胰岛GK的首次分析。对野生型人GK的动力学分析表明,葡萄糖S(0。5)和希尔系数与先前公布的体外数据相似(S(0.5)是半数最大速率下的葡萄糖水平)。 E70K具有野生型葡萄糖亲和力的一半,但酶活性相似。与野生型人胰岛GK相比,V203A表现出降低的催化活性和葡萄糖S(0.5)的8倍增加。 E300K具有与野生型相似的葡萄糖S(0.5),但酶活性降低了10倍。 E300K mRNA水平与野生型GK mRNA水平相当,但是Western印迹分析表明免疫学上可检测的蛋白水平明显降低,这与不稳定性突变相符。 V455M与野生型GK一样活跃,但S(0.5)明显降低。不同的GK突变体对葡萄糖刺激的胰岛素释放的影响支持动力学和表达数据。这些实验显示了遗传,生物化学和细胞生物学相结合的方法可用于量化由MODY-2和GK-HI突变引起的人GK的功能和结构变化。

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