School of Science, Engineering and Environment, University of Salford, Manchester M5 4WT, UK.
Molecules. 2022 May 7;27(9):2999. doi: 10.3390/molecules27092999.
Acetyl xylan esterases (AXEs) are enzymes capable of hydrolysing the acetyl bonds in acetylated xylan, allowing for enhanced activity of backbone-depolymerizing enzymes. Bioprospecting novel AXE is essential in designing enzyme cocktails with desired characteristics targeting the complete breakdown of lignocellulose. In this article, we report the characterisation of a novel AXE identified as Gene_id_40363 in the metagenomic library analysed from the gut microbiota of the common black slug. The conserved domain description was identified with an NCBI BLASTp search using the translated nucleotide sequence as a query. The activity of the recombinant enzyme was tested on various synthetic substrates and acetylated substrates. The protein sequence matched the conserved domain described as putative hydrolase and aligned closely to an uncharacterized esterase from , hence the designation as BaAXE. BaAXE showed low sequence similarity among characterized CE family proteins with an available 3D structure. BaAXE was active on 4-nitrophenyl acetate, reporting a specific activity of 78.12 U/mg and a Km value of 0.43 mM. The enzyme showed optimal activity at 40 °C and pH 8 and showed high thermal stability, retaining over 40% activity after 2 h of incubation from 40 °C to 100 °C. BaAXE hydrolysed acetyl bonds, releasing acetic acid from acetylated xylan and β-D-glucose pentaacetate. BaAXE has great potential for biotechnological applications harnessing its unique characteristics. In addition, this proves the possibility of bioprospecting novel enzymes from understudied environments.
乙酰木聚糖酯酶(AXEs)能够水解乙酰化木聚糖中的乙酰键,从而提高骨架解聚酶的活性。生物勘探新型 AXEs 对于设计具有所需特性的酶混合物以完全分解木质纤维素至关重要。在本文中,我们报告了一种新型 AXEs 的特性,该酶在从常见黑蜗牛肠道微生物群中分析的宏基因组文库中被鉴定为 Gene_id_40363。使用翻译后的核苷酸序列作为查询,通过 NCBI BLASTp 搜索确定保守结构域描述。在各种合成底物和乙酰化底物上测试了重组酶的活性。蛋白质序列与保守结构域描述相匹配,被描述为假定的水解酶,并与未表征的酯酶 紧密对齐,因此被命名为 BaAXE。BaAXE 在具有可用 3D 结构的特征化 CE 家族蛋白中具有较低的序列相似性。BaAXE 在 4-硝基苯乙酸酯上具有活性,报告比活性为 78.12 U/mg,Km 值为 0.43 mM。该酶在 40°C 和 pH8 下表现出最佳活性,在 40°C 至 100°C 的孵育 2 小时后保留超过 40%的活性。BaAXE 水解乙酰键,从乙酰化木聚糖和 β-D-葡萄糖五乙酸酯中释放出乙酸。BaAXE 具有很大的生物技术应用潜力,利用其独特的特性。此外,这证明了从研究较少的环境中生物勘探新型酶的可能性。