School of Microbiology, University College Cork, Cork, Ireland.
SSPC-SFI Research Centre for Pharmaceuticals, University College Cork, Cork, Ireland.
Microb Biotechnol. 2024 Jun;17(6):e14479. doi: 10.1111/1751-7915.14479.
Carboxylic ester hydrolases with the capacity to degrade polyesters are currently highly sought after for their potential use in the biological degradation of PET and other chemically synthesized polymers. Here, we describe MarCE, a carboxylesterase family protein identified via genome mining of a Maribacter sp. isolate from the marine sponge Stelligera stuposa. Based on phylogenetic analysis, MarCE and its closest relatives belong to marine-associated genera from the Cytophaga-Flavobacterium-Bacteroides taxonomic group and appear evolutionarily distinct to any homologous carboxylesterases that have been studied to date in terms of structure or function. Molecular docking revealed putative binding of BHET, a short-chain PET derivative, onto the predicted MarCE three-dimensional structure. The synthetic ester-degrading activity of MarCE was subsequently confirmed by MarCE-mediated hydrolysis of 2 mM BHET substrate, indicated by the release of its breakdown products MHET and TPA, which were measured, respectively, as 1.28 and 0.12 mM following 2-h incubation at 30°C. The findings of this study provide further insight into marine carboxylic ester hydrolases, which have the potential to display unique functional plasticity resulting from their adaptation to complex and fluctuating marine environmentsw.
目前,具有聚酯降解能力的羧酸酯水解酶因其在 PET 和其他化学合成聚合物的生物降解方面的潜在应用而备受关注。在这里,我们描述了 MarCE,这是一种通过对来自海洋海绵 Stelligera stuposa 的 Maribacter sp. 分离物的基因组挖掘鉴定的羧酸酯酶家族蛋白。基于系统发育分析,MarCE 及其最接近的亲缘关系属于 Cytophaga-Flavobacterium-Bacteroides 分类群中的海洋相关属,并且在结构或功能方面与迄今为止研究过的任何同源羧酸酯酶在进化上明显不同。分子对接显示 BHET(一种短链 PET 衍生物)可能结合到预测的 MarCE 三维结构上。MarCE 介导的 2 mM BHET 底物水解随后通过 MarCE 合成酯降解活性得到证实,通过释放其分解产物 MHET 和 TPA 来指示,在 30°C 孵育 2 小时后,分别测量到 1.28 和 0.12 mM。这项研究的结果进一步深入了解了海洋羧酸酯水解酶,由于它们适应复杂和波动的海洋环境,它们具有显示独特功能可塑性的潜力。