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首页> 外文期刊>Molecular biotechnology >Mass Production of an Active Peptide-N-Glycosidase F Using Silkworm-Baculovirus Expression System
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Mass Production of an Active Peptide-N-Glycosidase F Using Silkworm-Baculovirus Expression System

机译:使用家蚕杆状病毒表达系统批量生产活性肽-N-糖苷酶F

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摘要

The peptide-N (4)-(N-acetyl-beta-d-glucosaminyl) asparagine amidase F (PNGase F) catalyzes the cleavage of N-linked oligosaccharides between the innermost GlcNAc and asparagine residues of high mannose, hybrid and complex oligosaccharides from glycoproteins. The PNGase F has broad substrate specificity and thus is extensively used for the structural and functional studies of the glycoproteins. In this study, we tried to produce active recombinant PNGase F as secreted and intracellular-expressed forms using baculovirus expression vector system (BEVS) through silkworm larvae or cultured cells. PNGase F itself contains potential N-linked glycosylation sites and we found that it was N-glycosylated when PNGase F secreted from silkworm cells. Intriguingly, the secreted recombinant PNGase F has the lower catalytic activity and self-digests its N-linked glycans and therefore this secreted form of this enzyme produced from BEVS is not appropriate for carbohydrate chain analysis. Instead, we successfully mass-produced (2.1 mg/20 silkworm larvae) and purified active recombinant PNGase F as an intracellular protein without N-glycosylations. Besides, we confirmed by directed mutagenesis that several amino acid residues are crucial for the function of PNGase F. Our results provide an alternative method for the mass production of active enzymes involved in the study of glycoproteins.
机译:肽-N(4)-(N-乙酰基-β-d-葡糖胺基)天冬酰胺酰胺酶F(PNGase F)催化最内层GlcNAc与高甘露糖,混合杂合糖和复杂寡糖的天冬酰胺残基之间的N-连接寡糖裂解糖蛋白。 PNGase F具有广泛的底物特异性,因此被广泛用于糖蛋白的结构和功能研究。在这项研究中,我们试图通过杆状病毒表达载体系统(BEVS)通过家蚕幼虫或培养的细胞产生分泌和细胞内表达形式的活性重组PNGaseF。 PNGase F本身含有潜在的N-连接的糖基化位点,我们发现当PNGase F从家蚕细胞分泌时,它被N-糖基化。有趣的是,分泌的重组PNGase F具有较低的催化活性,并且会自消化其N-连接的聚糖,因此从BEVS产生的这种酶的这种分泌形式不适用于碳水化合物链分析。相反,我们成功地批量生产了(2.1 mg / 20家蚕幼虫)并纯化了活性重组PNGase F,将其作为一种细胞内蛋白而没有N-糖基化。此外,我们通过定向诱变证实了几个氨基酸残基对于PNGase F的功能至关重要。我们的结果为大规模生产参与糖蛋白研究的活性酶提供了另一种方法。

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