200
Views
2
CrossRef citations to date
0
Altmetric
Research Articles

Molecular insights to the binding interactions of APNS containing HIV-protease inhibitors against SARS-CoV-2 Mpro: an in silico approach towards drug repurposing

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 3900-3913 | Received 03 Jan 2022, Accepted 23 Mar 2022, Published online: 07 Apr 2022
 

Abstract

SARS-CoV-2 Mpro is one of the most vital enzymes of the new coronavirus-2 (SARS-CoV-2) and is a crucial target for drug discovery. Unfortunately, there is not any potential drugs available to combat the action of SARS-CoV-2 Mpro. Based on the reports HIV-protease inhibitors can be applied against the SARS by targeting the SARS-CoV-1 Mpro, we have chosen few clinically trialed experimental and allophenylnorstatine (APNS) containing HIV-protease inhibitors (JE-2147, JE-533, KNI-227, KNI-272 & KNI-1931), to examine their binding affinities with SARS-CoV-2 Mpro and to assess their potential to check for a possible drug candidate against the protease. Here, we have chosen a methodology to understand the binding mechanism of these five inhibitors to SARS-CoV-2 Mpro by merging molecular docking, molecular dynamics (MD) simulation and MM-PBSA based free energy calculations. Our estimations disclose that JE-2147 is highly effective (ΔGBind = −28.31 kcal/mol) due to an increased favorable van der Waals (ΔEvdw) interactions and decreased solvation (ΔGsolv) energies between the inhibitor and viral protease. JE-2147 shows a higher level of interactions as compared to JE-533 (−6.85 kcal/mol), KNI-227 (−18.36 kcal/mol), KNI-272 (−15.69 kcal/mol) and KNI-1931 (−21.59 kcal/mol) against SARS-CoV-2 Mpro. Binding contributions of important residues (His41, Met49, Cys145, His164, Met165, Glu166, Pro168, Gln189, etc.) from the active site or near the active site regions with ≥1.0 kcal/mol suggest a potent binding of the inhibitors. It is anticipated that the current study of binding interactions of these APNS containing inhibitors can pitch some valuable insights to design the significantly effective anti-SARS-CoV-2 Mpro drugs.

Communicated by Ramaswamy H. Sarma

Acknowledgement

The authors sincerely acknowledge and thank Berhampur University for providing the infrastructure to study this work. All the authors thank the World Bank-OHEPEE (Odisha Higher Education Program for Excellence and Equity), Department of Higher Education, Govt. of Odisha to support the Centre of Excellence on Bioprospecting of Ethno-pharmaceuticals of Southern Odisha, Berhampur University. The authors deeply appreciate the anonymous reviewers for their constructive suggestions for improvement of the article.

Disclosure statement

The authors declare that they have no conflict of interests.

Additional information

Funding

BRM is supported through UGC-BSR Start-Up grant (F.30-484/2019(BSR)) by Govt. of India, and Science & Technology, Govt. of Odisha project (SCST-MISC-0061-2018-1288). PP is a BPRF (Biju Pattnaik Research Fellowship) awardee from Science & Technology (S&T), Govt. of Odisha, India (STBT-MISC-0007-2020-2047/ST).

Log in via your institution

Log in to Taylor & Francis Online

PDF download + Online access

  • 48 hours access to article PDF & online version
  • Article PDF can be downloaded
  • Article PDF can be printed
USD 61.00 Add to cart

Issue Purchase

  • 30 days online access to complete issue
  • Article PDFs can be downloaded
  • Article PDFs can be printed
USD 1,074.00 Add to cart

* Local tax will be added as applicable

Related Research

People also read lists articles that other readers of this article have read.

Recommended articles lists articles that we recommend and is powered by our AI driven recommendation engine.

Cited by lists all citing articles based on Crossref citations.
Articles with the Crossref icon will open in a new tab.