Chemical denaturants induced folding unfolding pathway of the recombinant zebrafish dihydrofolate reductase

Authors

  • Vaishali V Acharya 1Amity Institute of Biotechnology, Molecular Biophysics Lab, Amity University, Noida-201 313, Uttar Pradesh, India
  • Anita Kamra Verma 2Nanobiotech Lab, Kirori Mal College, University of Delhi, New Delhi, 110 007, Delhi, India
  • Pratima Chaudhuri (Chattopadhyay) 1Amity Institute of Biotechnology, Molecular Biophysics Lab, Amity University, Noida-201 313, Uttar Pradesh, India

DOI:

https://doi.org/10.56042/ijbb.v59i2.57961

Keywords:

Denaturants, Enzymatic assay, Equilibrium unfolding, Refolding yield, UV-Visible Spectroscopy

Abstract

Denaturation of proteins plays a crucial part in cellular activities. In this study, we have investigated the folding unfolding pathways of zebrafish dihydrofolate reductase (zDHFR) in presence of different chemical denaturants which were found to be an influential factor for the refolding yield by UV-visible spectrophotometric analysis. The activity change of zDHFR has been observed in presence of three different denaturants like Acetic Acid (AcOH), Sodium Dodecyl Sulphate (SDS), and Ethanol (C2H5OH). Spectrophotometric analysis reveals that protein unfolded completely at different concentrations and times by these denaturants. The spontaneous refolding experiments of chemically denatured zDHFR were also conducted to verify the spontaneous refolding yield. These investigations have helped us to decipher a picture about the denaturants contributing to achieving the refolding yield. We observed that acetic acid is a stronger denaturant among all, and the spontaneous refolding yields were higher from SDS denaturation. In the light of the above findings, higher spontaneous refolding yields were obtained from the low concentration of denaturants.

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Published

2023-06-19

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Section

Papers

How to Cite

Chemical denaturants induced folding unfolding pathway of the recombinant zebrafish dihydrofolate reductase. (2023). Indian Journal of Biochemistry and Biophysics (IJBB), 59(2), 148-156. https://doi.org/10.56042/ijbb.v59i2.57961

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