[Heterologous expression of bacterial tyrosinase and its applications in biological hair dyeing and DOPA modification of hydrolyzed silk fibroin].

Q4 Biochemistry, Genetics and Molecular Biology Sheng wu gong cheng xue bao = Chinese journal of biotechnology Pub Date : 2024-09-25 DOI:10.13345/j.cjb.240143
Yilin Zheng, Ruirui Xu, Yang Wang, Chengge Fang, Guocheng DU, Zhen Kang
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Abstract

Tyrosinase is a copper-containing polyphenol oxidase widely applied in the food, cosmetics, pharmaceutical, and other industries. Currently, the production of commercial tyrosinase primarily relies on extraction from fungi, which has high costs, low purity, low specific activity, and poor stability. The objective of this study is to obtain highly expressed bacterial tyrosinase with potential for industrial applications. The bacterial tyrosinases from five different sources were heterologously expressed in Escherichia coli BL21(DE3), and the tyrosinases TyrBm and TyrVs derived from Bacillus megaterium and Verrucomicrobium spinosum were obtained with the enzyme activities of (16.1±0.2) U/mL and (48.6±0.9) U/mL, respectively. After protein purification, we compared the enzymatic properties of TyrBm and TyrVs, which revealed that TyrVs exhibited better thermal stability and higher substrate specificity than TyrBm. On the basis of characterizing TyrVs with high catalytic performance, we established a biological hair dyeing system based on TyrVs catalysis to achieve in-situ catalytic hair dyeing. The color washing fastness test measured the ∆E value less than 7.38±0.64 after simulated 14-day cleaning. To facilitate the rapid separation of catalytic products and enzymes, we successfully constructed an immobilized enzyme TyrVs-CipA dependent on self-assembly label CipA and applied this enzyme in the DOPA modification of hydrolyzed silk fibroin (HSF). The immobilized enzyme continuously catalyzed HSF for more than seven cycles, resulting in a single DOPA modification degree exceeding 70.00%. Further investigations demonstrated that DOPA modification enhances the scavenging activity of HSF towards DPPH and O2- radicals by 507.80% and 78.23%, respectively. This study provides a technical foundation for the development of environmentally friendly biological hair dye based on tyrosinase and biomaterials for tissue engineering.

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[细菌酪氨酸酶的异源表达及其在生物染发和水解蚕丝纤维素的 DOPA 改性中的应用]。
酪氨酸酶是一种含铜多酚氧化酶,广泛应用于食品、化妆品、制药等行业。目前,商业化酪氨酸酶的生产主要依赖于从真菌中提取,这种方法成本高、纯度低、特异活性低且稳定性差。本研究的目的是获得具有工业应用潜力的高表达细菌酪氨酸酶。将五种不同来源的细菌酪氨酸酶在大肠杆菌 BL21(DE3)中进行异源表达,得到了来源于巨大芽孢杆菌(Bacillus megaterium)和棘头疣梭菌(Verrucomicrobium spinosum)的酪氨酸酶 TyrBm 和 TyrVs,酶活分别为 (16.1±0.2) U/mL和 (48.6±0.9) U/mL。蛋白质纯化后,我们比较了TyrBm和TyrVs的酶学性质,发现TyrVs比TyrBm具有更好的热稳定性和更高的底物特异性。在鉴定出具有高催化性能的TyrVs的基础上,我们建立了基于TyrVs催化的生物染发系统,实现了原位催化染发。经过 14 天的模拟清洗,色洗牢度试验测得 ∆E 值小于 7.38±0.64。为了促进催化产物和酶的快速分离,我们成功构建了一种依赖于自组装标签 CipA 的固定化酶 TyrVs-CipA,并将该酶应用于水解蚕丝纤维素(HSF)的 DOPA 改性。固定化酶连续催化 HSF 七次以上,单次 DOPA 改性率超过 70.00%。进一步的研究表明,DOPA 改性使 HSF 对 DPPH 和 O2- 自由基的清除活性分别提高了 507.80% 和 78.23%。这项研究为开发基于酪氨酸酶的环境友好型生物染发剂和用于组织工程的生物材料奠定了技术基础。
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来源期刊
Sheng wu gong cheng xue bao = Chinese journal of biotechnology
Sheng wu gong cheng xue bao = Chinese journal of biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.50
自引率
0.00%
发文量
298
期刊介绍: Chinese Journal of Biotechnology (Chinese edition) , sponsored by the Institute of Microbiology, Chinese Academy of Sciences and the Chinese Society for Microbiology, is a peer-reviewed international journal. The journal is cited by many scientific databases , such as Chemical Abstract (CA), Biology Abstract (BA), MEDLINE, Russian Digest , Chinese Scientific Citation Index (CSCI), Chinese Journal Citation Report (CJCR), and Chinese Academic Journal (CD version). The Journal publishes new discoveries, techniques and developments in genetic engineering, cell engineering, enzyme engineering, biochemical engineering, tissue engineering, bioinformatics, biochips and other fields of biotechnology.
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