Structural Modeling and Molecular Docking of Cellulase Family Glycosyl Hydrolase Enzyme from Bacillus stercoris for Enhanced Biodegradation of Chloroguaiacols Derivatives

Research Article

Authors

  • Asma Yousafzai Department of Biotechnology, Balochistan University of Information Technology, Engineering and Management Sciences (BUITEMS), Quetta, Pakistan Author
  • Ayesha Nawaz Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Aqsa Shakeel Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Muhammad Sadiq Principal Medical Officer, CENAR Cancer Hospital, Quetta, Pakistan Author
  • Moeez Ahamd Saif Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Imama Murtaza Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Eisha Munawar Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Isna Tahir Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Muhammad Bilal Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Syed Fakhir Ali Shah Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Zain Ul Abideen Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Eisha Sajjad Department of Microbiology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Sadia Zakir Department of Biotechnology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Laiba Ehsan Department of Basic and Applied Chemistry, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author
  • Rabia Pervaiz Department of Biotechnology, Faculty of Science and Technology, University of Central Punjab, Lahore, Pakistan Author

DOI:

https://doi.org/10.31580/pjmls.v8i4.3353

Keywords:

AlphaFold3, Bacillus stercoris, Environmental toxicity, Cellulase family glycosyl hydrolase, Chloroguaiacols, Molecular docking, ProTox-3

Abstract

Chlorinated guaiacol compounds, commonly released from industrial effluents, are known for their environmental persistence and toxicity. While various microbial species have been studied for pollutant degradation, the enzymatic potential of Bacillus stercoris remains largely unexplored. This study addresses that gap by evaluating, through in silico methods, the biodegradation capability of a B. stercoris-derived cellulase family glycosyl hydrolase enzyme against selected chloroguaiacols. The enzyme’s sequence was retrieved from NCBI and subjected to detailed structural and physicochemical analysis. Tertiary structure modelling using AlphaFold3, followed by validation with MolProbity and ERRAT, confirmed structural reliability. Molecular docking studies using PyRx and CB-Dock2 revealed that chloroxylenol exhibited the highest binding affinity (–6.2 kcal/mol), supported by strong interactions with active site residues through hydrogen bonds, π-π stacking, and hydrophobic forces. Toxicity profiling via ProTox-3 confirmed the environmental risk posed by these compounds, especially their hepatotoxic and neurotoxic effects. Overall, the findings provide novel insights into the underutilized enzymatic potential of B. stercoris, supporting its relevance in future enzyme-based bioremediation strategies.

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Published

2025-12-31

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Section

Research Article

How to Cite

Structural Modeling and Molecular Docking of Cellulase Family Glycosyl Hydrolase Enzyme from Bacillus stercoris for Enhanced Biodegradation of Chloroguaiacols Derivatives: Research Article. (2025). Pak-Euro Journal of Medical and Life Sciences, 8(4), 795-806. https://doi.org/10.31580/pjmls.v8i4.3353

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