Tsvik Lidiia, Steiner Beate, Herzog Peter, Haltrich Dietmar, Sützl Leander
Laboratory of Food Biotechnology, Department of Food Science and Technology, University of Natural Resources and Life Sciences, Muthgasse 11, A-1190 Wien, Vienna, Austria.
DirectSens Biosensors GmbH, Am Rosenbühel 38, 3400 Klosterneuburg, Austria.
ACS Omega. 2022 Oct 31;7(45):41480-41492. doi: 10.1021/acsomega.2c05257. eCollection 2022 Nov 15.
The development of L-lactate biosensors has been hampered in recent years by the lack of availability and knowledge about a wider range and diversity of L-lactate-oxidizing enzymes that can be used as bioelements in these sensors. For decades, L-lactate oxidase of (LOx) has been used almost exclusively in the field of L-lactate biosensor development and has achieved somewhat like a monopoly status as a biocatalyst for these applications. Studies on other L-lactate-oxidizing enzymes are sparse and are often missing biochemical data. In this work, we made use of the vast amount of sequence information that is currently available on protein databases to investigate the naturally occurring diversity of L-lactate-utilizing enzymes of the flavin mononucleotide (FMN)-dependent α-hydroxy acid oxidoreductase (HAOx) family. We identified the HAOx sequence space specific for L-lactate oxidation and additionally discovered a not-yet described class of soluble and FMN-dependent L-lactate dehydrogenases, which are promising for the construction of second-generation biosensors or other biotechnological applications. Our work paves the way for new studies on α-hydroxy acid biosensors and proves that there is more to the HAOx family than LOx.
近年来,L-乳酸生物传感器的发展受到阻碍,原因在于缺乏可作为这些传感器生物元件的、种类更广泛且多样的L-乳酸氧化酶,同时也缺乏对其的了解。几十年来,L-乳酸氧化酶(LOx)几乎一直是L-乳酸生物传感器开发领域唯一使用的酶,在这些应用中作为生物催化剂已达到某种垄断地位。对其他L-乳酸氧化酶的研究稀少,且常常缺少生化数据。在这项工作中,我们利用蛋白质数据库中现有的大量序列信息,研究黄素单核苷酸(FMN)依赖性α-羟基酸氧化还原酶(HAOx)家族中利用L-乳酸的酶的自然多样性。我们确定了特定于L-乳酸氧化的HAOx序列空间,此外还发现了一类尚未描述的可溶性且依赖FMN的L-乳酸脱氢酶,它们有望用于构建第二代生物传感器或其他生物技术应用。我们的工作为α-羟基酸生物传感器的新研究铺平了道路,并证明HAOx家族中除了LOx还有更多成员。