Institut für Lebensmittelchemie, Gottfried Wilhelm Leibniz Universität Hannover, Callinstr. 5, 30167 Hannover, Germany.
Institute of Technical Chemistry, Gottfried Wilhelm Leibniz University Hannover, Callinstr. 5, 30167 Hannover, Germany.
Int J Mol Sci. 2021 Jan 29;22(3):1363. doi: 10.3390/ijms22031363.
The basidiomycete produced a dye-decolorizing peroxidase (PsaPOX) with alkene cleavage activity, implying potential as a biocatalyst for the fragrance and flavor industry. To increase the activity, a daughter-generation of 101 basidiospore-derived monokaryons (MK) was used. After a pre-selection according to the growth rate, the activity analysis revealed a stable intraspecific variability of the strains regarding peroxidase and alkene cleavage activity of PsaPOX. Ten monokaryons reached activities up to 2.6-fold higher than the dikaryon, with MK16 showing the highest activity. Analysis of the gene identified three different enzyme variants. These were co-responsible for the observed differences in activities between strains as verified by heterologous expression in . The mutation S371H in enzyme variant PsaPOX_high caused an activity increase alongside a higher protein stability, while the eleven mutations in variant PsaPOX_low resulted in an activity decrease, which was partially based on a shift of the pH optimum from 3.5 to 3.0. Transcriptional analysis revealed the increased expression of PsaPOX in MK16 as reason for the higher PsaPOX activity in comparison to other strains producing the same PsaPOX variant. Thus, different expression profiles, as well as enzyme variants, were identified as crucial factors for the intraspecific variability of the PsaPOX activity in the monokaryons.
担子菌产生了一种具有烯烃裂解活性的染料脱色过氧化物酶(PsaPOX),这意味着它有潜力成为香料和香精行业的生物催化剂。为了提高其活性,使用了 101 个担子孢子衍生单核体(MK)的后代一代。根据生长速度进行预选择后,活性分析显示 PsaPOX 的过氧化物酶和烯烃裂解活性在菌株间具有稳定的种内可变性。有 10 个单核体的活性最高可达二倍体的 2.6 倍,其中 MK16 的活性最高。对 基因的分析确定了三种不同的酶变体。这些变体共同导致了菌株间活性差异,这通过在 中的异源表达得到了验证。酶变体 PsaPOX_high 中的突变 S371H 导致活性增加和更高的蛋白质稳定性,而变体 PsaPOX_low 中的 11 个突变导致活性降低,这部分基于 pH 最优值从 3.5 转移到 3.0。转录分析显示,MK16 中 PsaPOX 的表达增加是其 PsaPOX 活性高于其他产生相同 PsaPOX 变体的菌株的原因。因此,不同的表达谱以及酶变体被确定为单核体中 PsaPOX 活性种内可变性的关键因素。