Hesperidin identified from Citrus extracts potently inhibits HCV genotype 3a NS3 protease

Mahim Khan1, Waqar Rauf1, Fazal-E- Habib1

  • 1Health Biotechnology Division, Pakistan Institute of Engineering and Applied Sciences, National Institute for Biotechnology and Genetic Engineering College, (NIBGE-C, PIEAS), Faisalabad, Punjab, 38000, Pakistan.

Insights

This study identified hesperidin from Citrus fruit extracts as a potent inhibitor of Hepatitis C virus NS3 protease. This flavonoid offers a potential cost-effective antiviral therapy for HCV genotype 3a.

Area of Science:

  • Biochemistry
  • Virology
  • Natural Product Chemistry

Background:

  • Hepatitis C virus (HCV) infection is a global health concern, leading to liver disease.
  • HCV genotype 3a is prevalent in South Asia.
  • Existing antiviral drugs are unaffordable in many regions, necessitating the development of cost-effective alternatives.

Purpose of the Study:

  • To identify antiviral compounds from Citrus fruit extracts targeting the HCV NS3 protease.
  • To evaluate the potential of these compounds as affordable therapeutic agents against HCV genotype 3a.

Main Methods:

  • Expressed and purified the Hepatitis C virus NS3 protease domain fused with the NS4A cofactor.
  • Utilized a FRET assay to screen 14 Citrus fruit extracts for protease inhibition.
  • Identified active compounds using ESI-MS/MS and performed molecular docking to analyze interactions with the NS3 active site.

Main Results:

  • The NS3-NS4A fusion protein enhanced purification yield and activity compared to NS3 alone.
  • Citrus paradisi, C. sinesis, C. aurantinum, and C. reticulata extracts significantly inhibited HCV NS3 protease activity.
  • Hesperidin, a flavonoid found in these extracts, was identified as a potent NS3 protease inhibitor with an IC50 of 11.34 ± 3.83 µg/mL.

Conclusions:

  • A validated FRET assay using NS3-NS4A protease effectively evaluated Citrus fruit extracts.
  • Hesperidin is a key flavonoid in Citrus extracts with significant potential as a cost-effective inhibitor of HCV NS3 protease.
  • Hesperidin could be developed into a novel antiviral drug for treating HCV genotype 3a infections.
Abstract

Related Concept Videos

Hepatitis01:25

Hepatitis

Hepatitis is an inflammatory condition of the liver most commonly caused by hepatotropic viruses (A–E), though non-infectious causes such as alcohol and drugs also exist.Hepatitis AHepatitis A virus (HAV) is a non-enveloped RNA virus of the Picornaviridae family. It is primarily transmitted via the fecal-oral route, typically through ingestion of contaminated food or water. After ingestion, HAV enters the bloodstream through the oropharynx or intestinal epithelium and reaches the liver. The...
Inhibitors Of Virion Release01:25

Inhibitors Of Virion Release

Viral replication and dissemination rely on efficient mechanisms for host cell entry, genome replication, assembly, and release. Influenza viruses, such as types A and B, are negative-sense single-stranded RNA viruses with a segmented genome, that depend on two critical surface glycoproteins to carry out these processes: hemagglutinin (HA) and neuraminidase (NA). HA initiates infection by binding to sialic acid residues on the surface of host epithelial cells, facilitating receptor-mediated...
Antiviral Nucleoside Inhibitors01:22

Antiviral Nucleoside Inhibitors

Antiviral Nucleoside InhibitorsAntiviral nucleoside inhibitors are structural analogs of natural nucleosides that interfere with viral DNA or RNA synthesis. These compounds selectively target viral polymerases due to their resemblance to host nucleosides, thereby disrupting viral genome replication.Mechanism of Acyclovir ActionAcyclovir is a guanosine analog with a three-carbon acyclic side chain. It selectively targets herpes simplex virus type 1 (HSV-1), herpes simplex virus type 2 (HSV-2),...
Inhibitors of Virion Maturation and Assembly01:19

Inhibitors of Virion Maturation and Assembly

As part of their replication cycle, certain viruses synthesize long precursor proteins called polyproteins within infected host cells. In human immunodeficiency virus (HIV), two major polyproteins are produced: Gag and Gag-Pol. The Gag polyprotein supplies the structural components of the virus, while Gag-Pol includes essential viral enzymes such as reverse transcriptase, integrase, and protease. After synthesis, these polyproteins move to the host cell membrane, where they assemble into an...