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菊欧文氏菌L-天冬酰胺酶的重组脱酰胺突变体与野生型酶相比具有相似或更高的活性。

Recombinant deamidated mutants of Erwinia chrysanthemi L-asparaginase have similar or increased activity compared to wild-type enzyme.

作者信息

Gervais David, Foote Nicholas

机构信息

Microbiology Services, Development & Production, Public Health England, Porton Down, Salisbury, Wiltshire, SP4 0JG, UK,

出版信息

Mol Biotechnol. 2014 Oct;56(10):865-77. doi: 10.1007/s12033-014-9766-9.

Abstract

The enzyme Erwinia chrysanthemi L-asparaginase (ErA) is an important biopharmaceutical product used in the treatment of acute lymphoblastic leukaemia. Like all proteins, certain asparagine (Asn) residues of ErA are susceptible to deamidation to aspartic acid (Asp), which may be a concern with respect to enzyme activity and potentially to pharmaceutical efficacy. Recombinant ErA mutants containing Asn to Asp changes were expressed, purified and characterised. Two mutants with single deamidation sites (N41D and N281D) were found to have approximately the same specific activity (1,062 and 924 U/mg, respectively) as the wild-type (908 U/mg). However, a double mutant (N41D N281D) had an increased specific activity (1261 U/mg). The N41D mutation conferred a slight increase in the catalytic constant (k cat 657 s(-1)) when compared to the WT (k cat 565 s(-1)), which was further increased in the double mutant, with a k cat of 798 s(-1). Structural analyses showed that the slight changes caused by point mutation of Asn41 to Asp may have reduced the number of hydrogen bonds in this α-helical part of the protein structure, resulting in subtle changes in enzyme turnover, both structurally and catalytically. The increased α-helical content observed with the N41D mutation by circular dichroism spectroscopy correlates with the difference in k cat, but not K m. The N281D mutation resulted in a lower glutaminase activity compared with WT and the N41D mutant, however the N281D mutation also imparted less stability to the enzyme at elevated temperatures. Taken as a whole, these data suggest that ErA deamidation at the Asn41 and Asn281 sites does not affect enzyme activity and should not be a concern during processing, storage or clinical use. The production of recombinant deamidated variants has proven an effective and powerful means of studying the effect of these changes and may be a useful strategy for other biopharmaceutical products.

摘要

菊花欧文氏菌L-天冬酰胺酶(ErA)是一种用于治疗急性淋巴细胞白血病的重要生物制药产品。与所有蛋白质一样,ErA的某些天冬酰胺(Asn)残基易脱酰胺形成天冬氨酸(Asp),这可能与酶活性以及潜在的药物疗效有关。表达、纯化并表征了含有Asn到Asp变化的重组ErA突变体。发现两个具有单个脱酰胺位点的突变体(N41D和N281D)的比活性(分别为1062和924 U/mg)与野生型(908 U/mg)大致相同。然而,一个双突变体(N41D N281D)的比活性增加(1261 U/mg)。与野生型(k cat 565 s(-1))相比,N41D突变使催化常数(k cat 657 s(-1))略有增加,在双突变体中进一步增加,k cat为798 s(-1)。结构分析表明,Asn41突变为Asp引起的微小变化可能减少了该蛋白质结构α螺旋部分中的氢键数量,导致酶周转在结构和催化方面发生细微变化。通过圆二色光谱观察到的N41D突变导致的α螺旋含量增加与k cat的差异相关,但与K m无关。与野生型和N41D突变体相比,N281D突变导致谷氨酰胺酶活性较低,然而,N281D突变在高温下也使酶的稳定性降低。总体而言,这些数据表明ErA在Asn41和Asn281位点的脱酰胺不影响酶活性,在加工、储存或临床使用期间不应成为问题。重组脱酰胺变体的产生已被证明是研究这些变化影响的一种有效且强大的手段,可能是其他生物制药产品的有用策略。

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