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A Novel GDP-d-glucose Phosphorylase Involved in Quality Control of the Nucleoside Diphosphate Sugar Pool in Caenorhabditis elegans and Mammals

机译:秀丽隐杆线虫和哺乳动物中涉及的核苷二磷酸糖池质量控制的新型GDP-d-葡萄糖磷酸化酶

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摘要

The plant VTC2 gene encodes GDP-l-galactose phosphorylase, a rate-limiting enzyme in plant vitamin C biosynthesis. Genes encoding apparent orthologs of VTC2 exist in both mammals, which produce vitamin C by a distinct metabolic pathway, and in the nematode worm Caenorhabditis elegans where vitamin C biosynthesis has not been demonstrated. We have now expressed cDNAs of the human and worm VTC2 homolog genes (C15orf58 and C10F3.4, respectively) and found that the purified proteins also display GDP-hexose phosphorylase activity. However, as opposed to the plant enzyme, the major reaction catalyzed by these enzymes is the phosphorolysis of GDP-d-glucose to GDP and d-glucose 1-phosphate. We detected activities with similar substrate specificity in worm and mouse tissue extracts. The highest expression of GDP-d-glucose phosphorylase was found in the nervous and male reproductive systems. A C. elegans C10F3.4 deletion strain was found to totally lack GDP-d-glucose phosphorylase activity; this activity was also found to be decreased in human HEK293T cells transfected with siRNAs against the human C15orf58 gene. These observations confirm the identification of the worm C10F3.4 and the human C15orf58 gene expression products as the GDP-d-glucose phosphorylases of these organisms. Significantly, we found an accumulation of GDP-d-glucose in the C10F3.4 mutant worms, suggesting that the GDP-d-glucose phosphorylase may function to remove GDP-d-glucose formed by GDP-d-mannose pyrophosphorylase, an enzyme that has previously been shown to lack specificity for its physiological d-mannose 1-phosphate substrate. We propose that such removal may prevent the misincorporation of glucosyl residues for mannosyl residues into the glycoconjugates of worms and mammals.
机译:植物VTC2基因编码GDP-1-半乳糖磷酸化酶,这是植物维生素C生物合成中的限速酶。在两种哺乳动物中都存在编码明显的VTC2直向同源物的基因,这两种哺乳动物通过独特的代谢途径产生维生素C,而线虫中的秀丽隐杆线虫没有证明维生素C的生物合成。现在,我们已经表达了人和蠕虫VTC2同源基因(分别为C15orf58和C10F3.4)的cDNA,并发现纯化的蛋白质还具有GDP-己糖磷酸化酶的活性。然而,与植物酶相反,这些酶催化的主要反应是GDP-d-葡萄糖到GDP和d-葡萄糖1-磷酸的磷酸解。我们在蠕虫和小鼠组织提取物中检测到了具有相似底物特异性的活性。在神经和男性生殖系统中发现了GDP-d-葡萄糖磷酸化酶的最高表达。发现秀丽隐杆线虫C10F3.4缺失菌株完全缺乏GDP-d-葡萄糖磷酸化酶活性。还发现在用针对人类C15orf58基因的siRNA转染的人类HEK293T细胞中,这种活性降低了。这些观察结果证实了蠕虫C10F3.4和人类C15orf58基因表达产物已被鉴定为这些生物的GDP-d-葡萄糖磷酸化酶。重要的是,我们在C10F3.4突变蠕虫中发现了GDP-d-葡萄糖的积累,这表明GDP-d-葡萄糖磷酸化酶可能起着去除GDP-d-甘露糖焦磷酸化酶形成的GDP-d-葡萄糖的作用。以前已显示出其生理学上的d-甘露糖1-磷酸底物缺乏特异性。我们提出这样的去除可以防止甘露糖基残基的葡糖基残基误掺入蠕虫和哺乳动物的糖缀合物中。

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