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用于高效降解聚乙烯的原核生物三域漆酶的祖先序列重建。

Ancestral sequence reconstruction of the prokaryotic three-domain laccases for efficiently degrading polyethylene.

作者信息

Zeng Bo, Fu Yishan, Ye Jiacai, Yang Penghui, Cui Shixiu, Qiu Wenxuan, Li Yangyang, Wu Taoxu, Zhang Haiyun, Wang Yachan, Du Guocheng, Liu Song

机构信息

Science Center for Future Foods, Jiangnan University, Wuxi 214122, China; School of Biotechnology, Jiangnan University, Wuxi 214122, China.

JiaXing Institute of Future Food, Jiaxing, Zhejiang 314000, China.

出版信息

J Hazard Mater. 2024 Sep 5;476:135012. doi: 10.1016/j.jhazmat.2024.135012. Epub 2024 Jun 28.

DOI:10.1016/j.jhazmat.2024.135012
PMID:38944993
Abstract

Biodegradation of polyethylene (PE) plastics is environmentally friendly. To obtain the laccases that can efficiently degrade PE plastics, we generated 9 ancestral laccases from 23 bacterial three-domain laccases through ancestral sequence reconstruction. The optimal temperatures of the ancestral laccases were between 60 °C-80 °C, while their optimal pHs were at 3.0 or 4.0. Without substrate pretreatment and mediator addition, all the ancestral laccases can degrade low-density polyethylene (LDPE) films at pH 7.0 and 60 °C. Among them, Anc52, which shared low sequence identity (18 %-41.7 %) with the reported PE-degrading laccases, was the most effective for LDPE degradation. After the catalytic reactions at 90 °C for 14 h, Anc52 (0.2 mg/mL) induced clear wrinkles and deep pits on the PE film surface detected by scanning electron microscope, and its carbonyl and hydroxyl indices reached 2.08 and 2.42, respectively. Then, we identified the residues 203 and 288 critical for PE degradation through site-directed mutation on Anc52. Moreover, Anc52 be activated by heat treatment (60 °C and 90 °C) at pH 7.0, which gave it a high catalytic efficiency (k/K= 191.73 mM·s) and thermal stability (half-life at 70 °C = 13.70 h). The ancestral laccases obtained here could be good candidates for PE biodegradation.

摘要

聚乙烯(PE)塑料的生物降解对环境友好。为了获得能够有效降解PE塑料的漆酶,我们通过祖先序列重建从23种细菌三结构域漆酶中生成了9种祖先漆酶。祖先漆酶的最佳温度在60℃至80℃之间,而其最佳pH值为3.0或4.0。在不进行底物预处理和添加介体的情况下,所有祖先漆酶都能在pH 7.0和60℃下降解低密度聚乙烯(LDPE)薄膜。其中,Anc52与已报道的PE降解漆酶的序列同一性较低(18%-41.7%),对LDPE降解最为有效。在90℃下催化反应14小时后,通过扫描电子显微镜检测发现,Anc52(0.2mg/mL)在PE薄膜表面诱导出明显的皱纹和深坑,其羰基和羟基指数分别达到2.08和2.42。然后,我们通过对Anc52进行定点突变,确定了对PE降解至关重要的203和288位残基。此外,Anc52在pH 7.0时可通过热处理(60℃和90℃)激活,使其具有高催化效率(k/K = 191.73mM·s)和热稳定性(70℃下的半衰期 = 13.70小时)。这里获得的祖先漆酶可能是PE生物降解的良好候选者。

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