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Insight into the biochemical characteristics of a novel glucokinase gene mutation

机译:洞察新型葡萄糖激酶基因突变的生化特征

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Glucokinase (GCK) acts as a glucose sensor and regulates β-cell insulin secretion. The heterozygous mutations in the gene encoding GCK cause a reduction of the enzyme activity, which results in a monogenic form of diabetes, maturity-onset diabetes of the young. In the present study, we identified and functionally characterized a novel missense mutation in the GCK gene, which results in a protein mutation Glu339 → Lys (E339K), from a Chinese family with hyperglycemia. The same GCK mutation that co-segregated with diabetes phenotype was identified in five members of this family but was not found in 200 healthy control individuals. We expressed and affinity-purified the GCK proteins from bacterial expression system that carries mutation (E339K) and fused to glutathione S-transferase. The expressed GCK protein was subjected to the measurement of its biochemical effects of the missense mutation on GCK activity. Our results showed that the mutation reduced the GCK protein yield. The enzymatic kinetics and the thermal stability analysis on the recombinant GCK proteins revealed that the mutation inactivates enzyme kinetics and severely impaired the GCK protein stability.
机译:葡糖激酶(GCK)充当葡萄糖传感器并调节β细胞胰岛素分泌。编码GCK的基因中的杂合突变导致酶活性降低,从而导致糖尿病的单基因形式,即年轻的成熟型糖尿病。在本研究中,我们鉴定了GCK基因中的一个新的错义突变,并对其功能进行了表征,该突变导致了来自中国高血糖家庭的蛋白突变Glu 339 →Lys(E339K)。在该家族的五个成员中发现了与糖尿病表型共分离的相同GCK突变,但在200名健康对照个体中未发现。我们从细菌表达系统表达并亲和纯化了GCK蛋白,该系统带有突变(E339K),并与谷胱甘肽S-转移酶融合。对表达的GCK蛋白进行其错义突变对GCK活性的生化作用的测量。我们的结果表明,该突变降低了GCK蛋白的产量。重组GCK蛋白的酶动力学和热稳定性分析表明,该突变使酶动力学失活,严重损害了GCK蛋白的稳定性。

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