van Eerde André, Várnai Anikó, Wang Yanliang, Paruch Lisa, Jameson John-Kristian, Qiao Fen, Eiken Hans Geir, Su Hang, Eijsink Vincent G H, Clarke Jihong Liu
NIBIO - Norwegian Institute of Bioeconomy Research, Ås, Norway.
Faculty of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences (NMBU), Ås, Norway.
Front Plant Sci. 2022 May 13;13:912293. doi: 10.3389/fpls.2022.912293. eCollection 2022.
Giant panda could have bamboo as their exclusive diet for about 2 million years because of the contribution of numerous enzymes produced by their gut bacteria, for instance laccases. Laccases are blue multi-copper oxidases that catalyze the oxidation of a broad spectrum of phenolic and aromatic compounds with water as the only byproduct. As a "green enzyme," laccases have potential in industrial applications, for example, when dealing with degradation of recalcitrant biopolymers, such as lignin. In the current study, a bacterial laccase, Lac51, originating from and identified in the gut microbiome of the giant panda's gut was transiently expressed in the non-food plant and characterized. Our results show that recombinant Lac51 exhibits bacterial laccase properties, with optimal pH and temperature at 7-8 and 40°C, respectively, when using syringaldazine as substrate. Moreover, we demonstrate the functional capability of the plant expressed Lac51 to oxidize lignin using selected lignin monomers that serve as substrates of Lac51. In summary, our study demonstrates the potential of green and non-food plants as a viable enzyme production platform for bacterial laccases. This result enriches our understanding of plant-made enzymes, as, to our knowledge, Lac51 is the first functional recombinant laccase produced in plants.
大熊猫能够以竹子作为其唯一的食物来源约200万年,这得益于其肠道细菌产生的多种酶,比如漆酶。漆酶是蓝色的多铜氧化酶,可催化多种酚类和芳香族化合物的氧化反应,唯一的副产物是水。作为一种“绿色酶”,漆酶在工业应用中具有潜力,例如在处理难降解生物聚合物(如木质素)的降解时。在本研究中,一种源自大熊猫肠道微生物群并在其中鉴定出的细菌漆酶Lac51,在非食用植物中瞬时表达并进行了表征。我们的结果表明,当以丁香醛连氮作为底物时,重组Lac51表现出细菌漆酶的特性,其最适pH和温度分别为7 - 8和40°C。此外,我们利用选定的作为Lac51底物的木质素单体,证明了植物表达的Lac51氧化木质素的功能能力。总之,我们的研究证明了绿色非食用植物作为细菌漆酶可行的酶生产平台的潜力。这一结果丰富了我们对植物制造的酶的理解,据我们所知,Lac51是第一种在植物中产生的功能性重组漆酶。