Oyobiki Ryo, Kato Taisuke, Katayama Michinobu, Sugitani Ai, Watanabe Takeshi, Einaga Yasuaki, Matsumoto Yoshinori, Horisawa Kenichi, Doi Nobuhide
Department of Biosciences and Informatics, Keio University , 3-14-1 Hiyoshi, Yokohama 223-8522, Japan.
Anal Chem. 2014 Oct 7;86(19):9570-5. doi: 10.1021/ac501907x. Epub 2014 Sep 11.
Although oxidoreductases are widely used in many applications, such as biosensors and biofuel cells, improvements in the function of existing oxidoreductases or the discovery of novel oxidoreductases with greater activities is desired. To increase the activity of oxidoreductases by directed evolution, a powerful screening technique for oxidoreductases is required. In this study, we demonstrate the utility of boron-doped diamond (BDD) microelectrodes for quantitative and potentially high-throughput measurement of the activity of NAD(P)-dependent oxidoreductases. We first confirmed that BDD microelectrodes can quantify the activity of low concentrations (10-100 pM) of glucose-6-phosphate dehydrogenase and alcohol dehydrogenase with a measuring time of 1 ms per sample. In addition, we found that poisoning of BDD microelectrodes can be repressed by optimizing the pH and by adding l-arginine to the enzyme solution as an antiaggregation agent. Finally, we fabricated a microfluidic device containing a BDD electrode for the first time and observed the elevation of the oxidation current of NADH with increasing flow rate. These results imply that the combination of a BDD microelectrode and microfluidics can be used for high-throughput screening of an oxidoreductase library containing a large number (>10(6)) of samples, each with a small (nanoliter) sample volume.
尽管氧化还原酶在许多应用中被广泛使用,如生物传感器和生物燃料电池,但仍需要改进现有氧化还原酶的功能或发现具有更高活性的新型氧化还原酶。为了通过定向进化提高氧化还原酶的活性,需要一种强大的氧化还原酶筛选技术。在本研究中,我们展示了硼掺杂金刚石(BDD)微电极在定量和潜在高通量测量NAD(P)依赖性氧化还原酶活性方面的实用性。我们首先证实,BDD微电极能够以每个样品1毫秒的测量时间对低浓度(10 - 100 pM)的葡萄糖-6-磷酸脱氢酶和乙醇脱氢酶的活性进行定量。此外,我们发现通过优化pH值并在酶溶液中添加L-精氨酸作为抗聚集剂,可以抑制BDD微电极的中毒现象。最后,我们首次制造了一种包含BDD电极的微流控装置,并观察到随着流速增加,NADH氧化电流升高。这些结果表明,BDD微电极与微流控技术的结合可用于高通量筛选包含大量(>10(6))样品的氧化还原酶文库,每个样品的体积很小(纳升)。