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工程化和动力学稳定治疗酶 Anabeana variabilis 苯丙氨酸解氨酶。

Engineering and kinetic stabilization of the therapeutic enzyme Anabeana variabilis phenylalanine ammonia lyase.

机构信息

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran,

出版信息

Appl Biochem Biotechnol. 2013 Dec;171(7):1805-18. doi: 10.1007/s12010-013-0450-5. Epub 2013 Sep 3.

Abstract

Anabeana variabilis phenylalanine ammonia lyase has just recently been discovered and introduced in clinical trials of phenylketonuria enzyme replacement therapy for its outstanding kinetic properties. In the present study, kinetic stabilization of this therapeutically important enzyme has been explored by introduction of a disulfide bond into the structure. Site-directed mutagenesis was performed with quick-change PCR method. Recombinant wild-type and mutated enzymes were expressed in Escherichia coli, and his-tagged proteins were affinity purified. Formation of disulfide bond was confirmed by Ellman's method, and then chemical unfolding, kinetic behavior, and thermal inactivation of mutated enzyme were compared with the wild type. Based on our results, the Q292C mutation resulted in a significant improvement in kinetic stability and resistance against chemical unfolding of the enzyme while kinetic parameters and pH profile of enzyme activity were remained unaffected. The results of the present study provided an insight towards designing phenylalanine ammonia lyases with higher stability.

摘要

最近发现并在苯丙酮尿症酶替代治疗的临床试验中引入了变叶木苯丙氨酸解氨酶,因其出色的动力学特性。在本研究中,通过在结构中引入二硫键来探索这种治疗上重要的酶的动力学稳定性。采用快速变化 PCR 方法进行定点突变。重组野生型和突变型酶在大肠杆菌中表达,并通过 His 标记蛋白亲和纯化。通过 Ellman 法确认二硫键的形成,然后比较突变酶与野生型酶的化学展开、动力学行为和热失活。根据我们的结果,Q292C 突变导致酶的动力学稳定性和对化学展开的抗性显著提高,而酶的动力学参数和 pH 谱保持不变。本研究的结果为设计具有更高稳定性的苯丙氨酸解氨酶提供了思路。

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