Is the Amino Acid HIS۴۵۸ and ASP/ASN۲۰۶ of Laccase from 𝑇. 𝑉𝑒𝑟𝑠𝑖𝑐𝑜𝑙𝑜𝑟 and 𝑇. 𝐻𝑖𝑟𝑠𝑢𝑡𝑎 Crucial for the Decolorization of Polycyclic Aromatic Textile Dyes? An 𝐼𝑛 𝑆𝑖𝑙𝑖𝑐𝑜 Investigation

  • سال انتشار: 1404
  • محل انتشار: فصلنامه علم و فناوری اوراسیا، دوره: 5، شماره: 1
  • کد COI اختصاصی: JR_EJST-5-1_010
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 120
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نویسندگان

Suraiya Akter Suborna

Department of Textile Engineering, Green University of Bangladesh, Narayanganj-۱۴۶۱, Dhaka, Bangladesh

Farzana Islam Lubna

Department of Textile Engineering, Green University of Bangladesh, Narayanganj-۱۴۶۱, Dhaka, Bangladesh

Mir Hasibul Hasan

Department of Textile Engineering, Green University of Bangladesh, Narayanganj-۱۴۶۱, Dhaka, Bangladesh

Ishmam Ibnul Arabi

Department of Natural Science, Port City International University, Chattogram, Bangladesh

Prasenjit Bhowmik

Department of Textile Engineering, Green University of Bangladesh, Narayanganj-۱۴۶۱, Dhaka, Bangladesh

چکیده

The development of the textile industry produced a vast array of dye variations. Textile dyes are widely used, easily synthesized, chemically stable, and poisonous. The most harmful category of synthetic dyes, which are also frequently found in wastewater as hazardous industrial pollutants, are highly mutagenic and carcinogenic to both people and animals, which highlights the necessity of decolorization. In this study, eleven polycyclic aromatic textile dyes- Acid Blue ۲۲۵, Disperse Blue ۳, Reactive Blue ۱۹, Acid Blue ۷۴, Basic Red ۹, Direct Blue ۷۱, Acid Red ۲۷, Acid Orange ۵۲, Acid Orange ۶, Reactive Blue ۲۲۱, and Reactive Black ۵ of Azo, Anthraquinone, Indigoid, and Rosaniline molecular class which were previously identified as potential target for laccase of T. Versicolor and T. Hirsuta was reinvestigated to identify the amino acids that are crucial for bond formation. Biovia Discovery studio and DoGSiteScorer online tool were used to identify active site residues, and AutoDockVina to calculate docking scores. Among eleven dyes, Direct blue ۷۱, Acid red ۲۷, Acid blue ۲۲۵, and Reactive blue ۱۹ were found to be more prone to bond formation with the laccase of T. Versicolor with binding affinities -۸.۱, -۷.۴, -۷.۲, and -۷.۲ kcal/mol, and T. Hirsuta with -۸.۱, -۸.۵, -۷.۹, and -۷.۵ kcal/mol compared to other dyes. From the structural analysis, HIS۴۵۸ of both laccases was found to be crucial for efficient electron transfer.

کلیدواژه ها

Laccase, Decolorization, Molecular docking analysis, T. Versicolor, T. Hirsuta, Loop region ۱-۴, HIS۴۵۸

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