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High-yield novel leech hyaluronidase to expedite the preparation of specific hyaluronan oligomers

机译:高产新型水ech透明质酸酶可加快特定透明质酸低聚物的制备

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摘要

Hyaluronidases (HAases), particularly leech HAases, have attracted intense attention due to their broad applications in medical treatments and great potential for the enzymatic production of hyaluronan oligosaccharides. However, little is known about this third interesting family of HAases. Here, we applied the random amplification of cDNA ends polymerase chain reaction (RACE-PCR) approach to identify the first leech HAase-encoding gene. By combining protein engineering and high-density culture, we achieved high-level production (8.42 × 105 U ml−1) in the yeast Pichia pastoris secretory expression system. Compared with the commercial bovine testicular HAase, the recombinant leech HAase exhibited superior enzymatic properties. Furthermore, analysis of the hydrolytic process suggested that this novel enzyme adopts a nonprocessive endolytic mode, yielding a narrow-spectrum of specific HA oligosaccharides with different incubation times. Large-scale production of this novel leech HAase will not only greatly promote medical applications but also facilitate the enzymatic production of specific HA oligosaccharides.
机译:透明质酸酶(HAases),特别是水HAHAases,由于其在医学治疗中的广泛应用和酶促生产透明质酸低聚糖的巨大潜力而​​引起了广泛的关注。然而,关于HAase的第三有趣家族知之甚少。在这里,我们应用cDNA末端聚合酶链反应(RACE-PCR)的随机扩增方法来鉴定第一个水ech HAase编码基因。通过将蛋白质工程与高密度培养相结合,我们在酵母毕赤酵母分泌表达系统中实现了高水平生产(8.42×10 5 U ml -1 )。与市售的牛睾丸HAase相比,重组水echHAase具有优良的酶促性能。此外,对水解过程的分析表明,这种新型酶采用了非加工性内切酶模式,可在不同的孵育时间下产生窄谱的特定HA低聚糖。这种新型水echHAase的大规模生产不仅将极大地促进医学应用,而且还将促进特定HA寡糖的酶促生产。

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