Jasińska Anna, Góralczyk Aleksandra, Soboń Adrian, Długoński Jerzy
Department of Industrial Microbiology and Biotechnology, Faculty of Biology and Environmental Protection, University of Lodz, Łódź, Poland.
Acta Biochim Pol. 2018;65(2):287-295. doi: 10.18388/abp.2017_2546. Epub 2018 Apr 25.
The aim of this study was to overproduce, identify and apply novel laccase-like multicopper oxidases (LMCOs) from Myrothecium roridum in a dye removal process. LMCOs' production was enhanced by modifying the medium and adding copper ions. After purification, two proteins, LMCO1 and LMCO2, with molecular masses of 46.7 and 66.3 kDa were discovered. Peptide analysis by mass spectrometry revealed that they belong to the cupredoxin superfamily. Characteristic peptide sequences were obtained for MCOs and bilirubin oxidases. Crude enzymes were applied in a dye decolorization process. Supplementation with 1 mM of vanillin allowed an almost complete elimination of the Indigo carmine within 3 hours. The dye was removed from a solution containing metals, surfactants and organic solvents. The in-gel assessment of the activity and decolorization ability of MCOs, followed by protein extraction and SDS-PAGE, confirmed that only LMCO2 was responsible for the dye removal. MCOs produced by Myrothecium sp. have been poorly studied before. The obtained results broaden knowledge on this subject and may contribute to the development of an eco-friendly method of dye elimination.
本研究的目的是在染料去除过程中过量生产、鉴定并应用来自漆斑菌的新型漆酶样多铜氧化酶(LMCOs)。通过改良培养基和添加铜离子来提高LMCOs的产量。纯化后,发现了两种蛋白质,LMCO1和LMCO2,分子量分别为46.7 kDa和66.3 kDa。质谱肽分析表明它们属于铜蓝蛋白超家族。获得了MCOs和胆红素氧化酶的特征肽序列。粗酶应用于染料脱色过程。添加1 mM香兰素可在3小时内几乎完全去除靛蓝胭脂红。该染料可从含有金属、表面活性剂和有机溶剂的溶液中去除。对MCOs的活性和脱色能力进行凝胶内评估,随后进行蛋白质提取和SDS-PAGE,证实只有LMCO2负责染料去除。以前对漆斑菌属产生的MCOs研究较少。所得结果拓宽了关于该主题的知识,并可能有助于开发一种生态友好的染料去除方法。