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Computational investigation of benzalacetophenone derivatives against SARS-CoV-2 as potential multi-target bioactive compounds.
Khanal, Pukar; Patil, Vishal S; Bhandare, Vishwambhar V; Dwivedi, Prarambh S R; Shastry, C S; Patil, B M; Gurav, Shailendra S; Harish, Darasaguppe R; Roy, Subarna.
  • Khanal P; Department of Pharmacology, NGSM Institute of Pharmaceutical Sciences (NGSMIPS), Nitte (Deemed to be University), Mangalore, 575018, India. Electronic address: pukarkhanal58@gmail.com.
  • Patil VS; ICMR-National Institute of Traditional Medicine, Belagavi, Karnataka, 590010, India.
  • Bhandare VV; ICMR-National Institute of Traditional Medicine, Belagavi, Karnataka, 590010, India.
  • Dwivedi PSR; Department of Pharmacology, NGSM Institute of Pharmaceutical Sciences (NGSMIPS), Nitte (Deemed to be University), Mangalore, 575018, India.
  • Shastry CS; Department of Pharmacology, NGSM Institute of Pharmaceutical Sciences (NGSMIPS), Nitte (Deemed to be University), Mangalore, 575018, India.
  • Patil BM; PRES's Pravara Rural College of Pharmacy Pravaranagar, Loni, 413736, Maharashtra, India.
  • Gurav SS; Department of Pharmacognosy and Phytochemistry, Goa College of Pharmacy, Panaji, Goa, India.
  • Harish DR; ICMR-National Institute of Traditional Medicine, Belagavi, Karnataka, 590010, India. Electronic address: drharish49@gmail.com.
  • Roy S; ICMR-National Institute of Traditional Medicine, Belagavi, Karnataka, 590010, India.
Comput Biol Med ; 146: 105668, 2022 07.
Article in English | MEDLINE | ID: covidwho-1867012
ABSTRACT
Benzalacetophenones, precursors of flavonoids are aromatic ketones and enones and possess the immunostimulant as well as antiviral activities. Thus, benzalacetophenones were screened against the COVID-19 that could be lethal in patients with compromised immunity. We considered ChEBI recorded benzalacetophenone derivative(s) and evaluated their activity against 3C-like protease (3CLpro), papain-like protease (PLpro), and spike protein of SARS-Cov-2 to elucidate their possible role as antiviral agents. The probable targets for each compound were retrieved from DIGEP-Pred at 0.5 pharmacological activity and all the modulated proteins were enriched to identify the probably regulated pathways, biological processes, cellular components, and molecular functions. In addition, molecular docking was performed using AutoDock 4 and the best-identified hits were subjected to all-atom molecular dynamics simulation and binding energy calculations using molecular mechanics Poisson-Boltzmann surface area (MMPBSA). The compound 4-hydroxycordoin showed the highest druglikeness score and regulated nine proteins of which five were down-regulated and four were upregulated. Similarly, enrichment analysis identified the modulation of multiple pathways concerned with the immune system as well as pathways related to infectious and non-infectious diseases. Likewise, 3'-(3-methyl-2-butenyl)-4'-O-ß-d-glucopyranosyl-4,2'-dihydroxychalcone with 3CLpro, 4-hydroxycordoin with PLpro and mallotophilippen D with spike protein receptor-binding domain showed highest binding affinity, revealed stable interactions during the simulation, and scored binding free energy of -26.09 kcal/mol, -16.28 kcal/mol, and -39.2 kcal/mol, respectively. Predicted anti-SARS-CoV-2 activities of the benzalacetophenones reflected the requirement of wet lab studies to develop novel antiviral candidates.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Chalcone / COVID-19 Drug Treatment Type of study: Experimental Studies / Prognostic study Limits: Humans Language: English Journal: Comput Biol Med Year: 2022 Document Type: Article

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Chalcone / COVID-19 Drug Treatment Type of study: Experimental Studies / Prognostic study Limits: Humans Language: English Journal: Comput Biol Med Year: 2022 Document Type: Article