KINETICS OF THERMOINACTIVATION OF D-AMINO ACID OXIDASE OPADAAO1 FROM THE OGATAEA PARAPOLYMORPHA DL-1 YEAST

MARIA K. KOSHKINA, EGOR P. SERGEYEV, TIMOFEY A. FEDOROV, MICHAEL D. SHELOMOV, ANASTASIA A. POMETUN, SVYATOSLAV S. SAVIN, VLADIMIR I. TISHKOV, DENIS L. ATROSHENKO
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Abstract

Our earlier annotation of genome of the yeast Ogataea parapolymorpha DL-1 made it possible to identify ve genes of potential D-amino acids oxidases. All opadaao1 - opadaao5 genes were cloned and expressed in E. coli. Four OpaDAAO1- OpaDAAO4 enzymes were obtained in highly puri ed form and their catalytic properties were studied. It was found that among all DAAOs described in the literature so far, the enzyme OpaDAAO1 has the highest catalytic constant kcat with D-Ala, which makes it promising for practical applications. However, in addition to good catalytic parameters, effective application of the enzyme in practice requires high stability and knowledge of the inactivation mechanism, including at elevated temperatures. In this work we studied the effect of elevated temperatures on the stability of OpaDAAO1. The enzyme was shown to have high thermal stability in comparison with majority of other D-amino acid oxidases. The kinetics of OpaDAAO1 inactivation at different temperatures, initial concentrations of the enzyme, and in the presence of exogenous FAD were studied. A possible kinetic scheme of inactivation was proposed based on the data obtained.
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副多形虫dl-1酵母d -氨基酸氧化酶opadaao1热失活动力学
我们对酵母副多态Ogataea parapolymorpha DL-1基因组的早期注释使得鉴定出5个潜在的d -氨基酸氧化酶基因成为可能。所有的opadaao1 - opadaao5基因均被克隆并在大肠杆菌中表达。得到了4种高纯度的OpaDAAO1- OpaDAAO4酶,并对其催化性能进行了研究。研究发现,在目前文献中描述的所有daao中,OpaDAAO1酶对D-Ala的催化常数kcat最高,具有较好的实际应用前景。然而,除了良好的催化参数外,酶在实践中的有效应用需要高稳定性和对失活机制的了解,包括在高温下的失活机制。本文研究了高温对OpaDAAO1稳定性的影响。与大多数其他d -氨基酸氧化酶相比,该酶具有较高的热稳定性。研究了OpaDAAO1在不同温度、初始酶浓度和外源FAD存在下的失活动力学。根据得到的数据,提出了一种可能的失活动力学方案。
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