Hamuro Yuhi, Tajima Katsuya, Matsumoto-Akanuma Akiko, Sakamoto Sayaka, Furukawa Ryutaro, Yamagishi Akihiko, Ohno Naohito, Akanuma Satoshi
Faculty of Human Sciences, Waseda University, 2-579-15 Mikajima, Tokorozawa, Saitama 359-1192, Japan.
School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0392, Japan.
J Biosci Bioeng. 2017 Dec;124(6):623-629. doi: 10.1016/j.jbiosc.2017.07.004. Epub 2017 Aug 26.
Laccases are enzymes that oxidize various aromatic compounds, and therefore they have attracted much attention from the standpoints of medical and industrial applications. We previously isolated the cDNA that codes for a laccase isozyme (Lac2a) from the medicinal mushroom Agaricus brasiliensis (Matsumoto-Akanuma et al., Int. J. Med. Mushrooms, 16, 375-393, 2014). In this study, we first attempted heterologous expression of the wild-type laccase using a Pichia pastoris secretory expression system. However, the trial was unsuccessful most likely because the enzyme was too unstable and degraded immediately after production. Therefore, we improved the stability of the laccase by using a phylogeny-based design method. We created a mutant laccase in which sixteen original residues were replaced with those found in the phylogenetically inferred ancestral sequence. The resulting mutant protein was successfully produced using the P. pastoris secretory expression system and then purified. The designed laccase showed catalytic properties similar to those of other fungal laccases. Moreover, the laccase is highly thermally stable at acidic and neutral pH and is also stable at alkaline pH at moderate temperatures. We expect that the laccase will serve as a useful tool for enzymatic polymerization of di-phenolic compounds.
漆酶是一种能氧化多种芳香族化合物的酶,因此从医学和工业应用的角度来看,它们备受关注。我们之前从药用蘑菇巴西蘑菇(Matsumoto - Akanuma等人,《国际药用蘑菇杂志》,16卷,375 - 393页,2014年)中分离出了编码漆酶同工酶(Lac2a)的cDNA。在本研究中,我们首先尝试使用毕赤酵母分泌表达系统对野生型漆酶进行异源表达。然而,该试验未成功,最有可能的原因是该酶过于不稳定,在产生后立即降解。因此,我们采用基于系统发育的设计方法提高了漆酶的稳定性。我们创建了一种突变漆酶,其中16个原始残基被系统发育推断的祖先序列中的残基所取代。所得突变蛋白通过毕赤酵母分泌表达系统成功产生,然后进行了纯化。设计的漆酶表现出与其他真菌漆酶相似的催化特性。此外,该漆酶在酸性和中性pH下具有高度热稳定性,在中等温度的碱性pH下也很稳定。我们期望这种漆酶将成为二酚类化合物酶促聚合的有用工具。