Creation of catalytic activity-improved hyperthermophilic PQQ-dependent aldose sugar dehydrogenase and its efficient use for high performance electro-device

IF 4.1 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of biotechnology Pub Date : 2024-11-28 DOI:10.1016/j.jbiotec.2024.11.017
Miku Maeno , Yusuke Miki , Kazuki Ito , Haruhiko Sakuraba , Toshihisa Ohshima , Shin-ichiro Suye , Takenori Satomura
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Abstract

PQQ-dependent aldose sugar dehydrogenase (PQQ-ASD) from the hyperthermophilic archaeon Pyrobaculum aerophilum (PaeASD) has great potential as an element for durable bioelectrodevices owing to its exceptional stability against high temperatures and across a broad pH spectrum. However, its application is constrained by low electric current output of the enzyme-immobilized electrodes, which is attributable to its low catalytic activity. A directed evolutionary approach was performed on PaeASD to improve enzyme activity, resulting in the identification of a PaeASD s24 mutant containing six amino acid substitutions, which exhibited a 16-fold higher specific activity than that of wild type. Although each single amino acid mutant among these substitutions exhibited lower enzyme activity than PaeASD s24, the double mutant R64Q/D350N showed enzyme activity comparable to that of PaeASD s24. These amino acids located in the vicinity of coenzyme PQQ within the PaeASD molecule are also highly conserved with those of PQQ-ASDs reported to date. Thus, these amino acids play crucial roles in the catalytic activity of PQQ-ASD. Furthermore, the Km value for d-glucose of PaeASD s24-immobilized electrode decreased to approximately 1/3 that of the wild-type-immobilized electrode. These results indicate that the PaeASD s24 mutant is an excellent catalyst for potential bioelectrodevice applications.
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催化活性改进的超耐热pqq依赖性醛糖脱氢酶的建立及其在高性能电器件中的高效应用。
pqq依赖性醛糖脱氢酶(PQQ-ASD)来自嗜热古菌嗜气焦杆菌(PaeASD),由于其对高温和宽pH谱的优异稳定性,作为耐用生物电子器件的元件具有巨大的潜力。然而,它的应用受到酶固定电极的低电流输出的限制,这是由于它的低催化活性。对PaeASD进行定向进化以提高酶活性,结果鉴定出含有6个氨基酸取代的PaeASD s24突变体,其比野生型的特异性活性高16倍。虽然这些替换中的每个单氨基酸突变体的酶活性都低于PaeASD s24,但双突变体R64Q/D350N的酶活性与PaeASD s24相当。这些位于PaeASD分子中辅酶PQQ附近的氨基酸也与迄今报道的pq - asd的氨基酸高度保守。因此,这些氨基酸在PQQ-ASD的催化活性中起着至关重要的作用。此外,paeasds24固定电极的d-葡萄糖Km值降至野生型固定电极的1/3左右。这些结果表明PaeASD s24突变体是一种极好的催化剂,具有潜在的生物电器件应用前景。
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来源期刊
Journal of biotechnology
Journal of biotechnology 工程技术-生物工程与应用微生物
CiteScore
8.90
自引率
2.40%
发文量
190
审稿时长
45 days
期刊介绍: The Journal of Biotechnology has an open access mirror journal, the Journal of Biotechnology: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal provides a medium for the rapid publication of both full-length articles and short communications on novel and innovative aspects of biotechnology. The Journal will accept papers ranging from genetic or molecular biological positions to those covering biochemical, chemical or bioprocess engineering aspects as well as computer application of new software concepts, provided that in each case the material is directly relevant to biotechnological systems. Papers presenting information of a multidisciplinary nature that would not be suitable for publication in a journal devoted to a single discipline, are particularly welcome.
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