Faculty of Chemical Engineering, University of Campinas (UNICAMP), Campinas, SP, Brazil.
Department of Biochemistry and Tissue Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, SP, Brazil.
PLoS One. 2019 Feb 25;14(2):e0212629. doi: 10.1371/journal.pone.0212629. eCollection 2019.
Ferulic acid (FA), a low-molecular weight aromatic compound derived from lignin, represents a high-value molecule, used for applications in the cosmetic and pharmaceutical industries. FA can be further enzymatically converted in other commercially interesting molecules, such as vanillin and bioplastics. In several organisms, these transformations often start with a common step of FA activation via CoA-thioesterification, catalyzed by feruloyl-CoA synthetases (Fcs). In this context, these enzymes are of biotechnological interest for conversion of lignin-derived FA into high value chemicals. In this study, we describe the first structural characterization of a prokaryotic Fcs, named FCS1, isolated from a lignin-degrading microbial consortium. The FCS1 optimum pH and temperature were 9 and 37°C, respectively, with Km of 0.12 mM and Vmax of 36.82 U/mg. The circular dichroism spectra indicated a notable secondary structure stability at alkaline pH values and high temperatures. This secondary structure stability corroborates the activity data, which remains high until pH 9. The Small Angle X-Ray Scattering analyses resulted on the tertiary/quaternary structure and the low-resolution envelope in solution of FCS1, which was modeled as a homodimer using the hyperthermophilic nucleoside diphosphate-forming acetyl-CoA synthetase from Candidatus Korachaeum cryptofilum. This study contributes to the field of research by establishing the first biophysical and structural characterization for Fcs, and our data may be used for comparison against novel enzymes of this class that to be studied in the future.
阿魏酸(FA)是一种来源于木质素的低分子量芳香族化合物,是一种高价值的分子,可用于化妆品和制药行业。FA 可以进一步通过酶转化为其他具有商业价值的分子,如香草醛和生物塑料。在几种生物中,这些转化通常从 FA 通过 CoA-硫酯化的共同步骤开始,由阿魏酰辅酶 A 合成酶(Fcs)催化。在这种情况下,这些酶在将木质素衍生的 FA 转化为高价值化学品方面具有生物技术应用的潜力。在这项研究中,我们描述了一种从木质素降解微生物联合体中分离出的原核 Fcs(称为 FCS1)的首次结构表征。FCS1 的最适 pH 和温度分别为 9 和 37°C,Km 值为 0.12 mM,Vmax 值为 36.82 U/mg。圆二色性光谱表明,在碱性 pH 值和高温下具有明显的二级结构稳定性。这种二级结构稳定性与活性数据相符,直至 pH 9 活性仍保持较高水平。小角度 X 射线散射分析得出了 FCS1 的三级/四级结构和溶液中的低分辨率包络,使用来自嗜热核苷二磷酸形成乙酰辅酶 A 合成酶的 Candidatus Korachaeum cryptofilum 对其进行建模,结果为同源二聚体。本研究通过建立 Fcs 的首次生物物理和结构表征,为该领域的研究做出了贡献,并且我们的数据可用于与未来研究的新型该类酶进行比较。