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A mutant of phosphomannomutase1 retains full enzymatic activity, but is not activated by IMP: Possible implications for the disease PMM2-CDG

机译:磷酸甘露糖突变酶1的突变体保留了完整的酶活性,但未被IMP激活:对疾病PMM2-CDG的可能影响

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摘要

The most frequent disorder of glycosylation, PMM2-CDG, is caused by a deficiency of phosphomannomutase activity. In humans two paralogous enzymes exist, both of them require mannose 1,6-bis-phosphate or glucose 1,6-bis-phosphate as activators, but only phospho-mannomutase1 hydrolyzes bis-phosphate hexoses. Mutations in the gene encoding phosphomannomutase2 are responsible for PMM2-CDG. Although not directly causative of the disease, the role of the paralogous enzyme in the disease should be clarified. Phosphomannomutase1 could have a beneficial effect, contributing to mannose 6-phosphate isomerization, or a detrimental effect, hydrolyzing the bis-phosphate hexose activator. A pivotal role in regulating mannose-1phosphate production and ultimately protein glycosylation might be played by inosine monophosphate that enhances the phosphatase activity of phosphomannomutase1. In this paper we analyzed human phosphomannomutases by conventional enzymatic assays as well as by novel techniques such as 31P-NMR and thermal shift assay. We characterized a triple mutant of phospomannomutase1 that retains mutase and phosphatase activity, but is unable to bind inosine monophosphate.
机译:糖基化最常见的疾病,PMM2-CDG,是由磷酸甘露糖突变酶活性不足引起的。在人类中,存在两种旁系酶,它们都需要甘露糖1,6-双磷酸酯或葡萄糖1,6-双磷酸酯作为激活剂,但只有磷酸甘露糖变酶1水解双磷酸己糖。编码磷酸甘露糖突变酶2的基因中的突变负责PMM2-CDG。尽管不是疾病的直接病因,但应阐明同源酶在疾病中的作用。磷酸甘露糖突变酶1可能具有有益的作用,有助于甘露糖6-磷酸的异构化,或者具有有害的作用,即水解双磷酸己糖活化剂。肌苷单磷酸可能会在调节1-磷酸甘露糖的产生和最终蛋白质糖基化中起关键作用,从而增强磷酸甘露糖突变酶1的磷酸酶活性。在本文中,我们通过常规酶法以及 31 P-NMR和热位移法等新技术分析了人类磷酸单核苷酸酶。我们的特征是磷酸单磷酸突变酶1的三个突变体,它保留了突变酶和磷酸酶的活性,但不能结合肌苷单磷酸。

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