首页> 外文期刊>European journal of human genetics: EJHG >Carbohydrate-deficient glycoprotein syndrome type 1A: expression and characterisation of wild type and mutant PMM2 in E. coli.
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Carbohydrate-deficient glycoprotein syndrome type 1A: expression and characterisation of wild type and mutant PMM2 in E. coli.

机译:碳水化合物缺乏型糖蛋白综合症1A型:野生型和突变型PMM2在大肠杆菌中的表达和特征。

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We have identified the PMM2 genotypes of 22 unrelated Danish patients with carbohydrate-deficient glycoprotein syndrome type 1A: R141H/F119L (18), R141H/C192G (1), F119L/F119L (1), F119L/G117R (1) and D223E/T237R (1). The lack of patients homozygous for R141H is statistically highly significant, but unexplained. In order to investigate the effect of PMM2 mutations on phosphomannomutase (PMM2) activity, PMM2-cDNA was cloned into a pET3a vector. Following introduction of mutations into PMM2-cDNA by site-specific mutagenesis, wild type and mutant PMM2-cDNA were expressed in E. coli Bl21(DE3) cells, and the activity of PMM2 was determined by an enzymatic assay using mannose 1-phosphate as substrate. Recombinant R141H, G117R, and T237R PMM2 had no detectable catalytic activity, and the F119L PMM2 had 25% of the activity of the wild type. The activity of the C192G and D223E PMM2 was in the normal range, but the affinity for their substrate was lower, and the proteins were more sensitive to increased temperatures. Each patient has at least one mutation which retains residual PMM2 activity. Our results support the hypotheses that a genotype conveying residual PMM2 catalytic activity is required for survival, and that homozygosity for R141H impairs PMM2 to a degree incompatible with life.
机译:我们已经确定了22名与碳水化合物缺乏糖蛋白综合征1A型无关的丹麦患者的PMM2基因型:R141H / F119L(18),R141H / C192G(1),F119L / F119L(1),F119L / G117R(1)和D223E / T237R(1)。 R141H纯合患者的缺乏在统计上是高度显着的,但无法解释。为了研究PMM2突变对磷酸甘露糖突变酶(PMM2)活性的影响,将PMM2-cDNA克隆到了pET3a载体中。通过位点特异性诱变将突变引入PMM2-cDNA后,野生型和突变PMM2-cDNA在大肠杆菌Bl21(DE3)细胞中表达,并通过酶法测定PMM2的活性,其中使用了1磷酸甘露糖。基质。重组R141H,G117R和T237R PMM2没有可检测的催化活性,F119L PMM2具有野生型活性的25%。 C192G和D223E PMM2的活性在正常范围内,但对其底物的亲和力较低,并且蛋白质对温度升高更敏感。每个患者具有至少一个保留剩余PMM2活性的突变。我们的结果支持这样的假设,即基因型必须携带残留的PMM2催化活性才能生存,而R141H的纯合性会在一定程度上损害PMM2的寿命。

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