Over-expression and characterization of NS3 and NS5A of Hepatitis C virus genotype 3a

Muhammad Ikram Anwar, Mazhar Iqbal1, Mohammad S Yousef

  • 1Drug Discovery and Structural Biology group, Health Biotechnology Division, National Institute for Biotechnology and Genetic Engineering (NIBGE), Faisalabad, Pakistan. hamzamgondal@gmail.com.

Microbial Cell Factories
|November 19, 2013
PubMed
Abstract

Insights

Researchers successfully produced high yields of Hepatitis C virus (HCV) genotype 3a NS3 and NS5A proteins. This advancement facilitates the development of new therapies against this widespread HCV strain.

Area of Science:

  • Biochemistry
  • Virology
  • Drug Discovery

Background:

  • Hepatitis C virus (HCV) causes liver cirrhosis and cancer, with current treatments being partially effective and poorly tolerated.
  • Direct-acting antivirals (DAAs) like Telaprevir and Boceprevir are effective against HCV genotype 1 but not genotype 3a, prevalent in South Asia.
  • Rational drug design targeting HCV non-structural proteins is crucial for developing new therapies.

Purpose of the Study:

  • To achieve recombinant production of Hepatitis C virus (HCV) genotype 3a non-structural proteins NS3 and NS5A.
  • To enable the screening of inhibitors against these essential HCV drug targets.
  • To support the development of novel therapeutic strategies against HCV genotype 3a.

Main Methods:

  • High-level expression of NS3 and NS5A proteins was achieved using specific concentrations of Isopropyl β-D-1-thiogalactopyranoside (IPTG) at 25°C.
  • Proteins were purified using Nickel-affinity chromatography to approximately 95% purity.
  • Circular dichroism (CD) and Fourier-transform infrared (FT-IR) spectroscopy were employed for structural analysis.

Main Results:

  • High yields of purified NS3 (4 mg/L) and NS5A (1 mg/L) were obtained.
  • The specificity constant (Kcat/Km) for NS3 was higher when expressed at 25°C compared to 14°C.
  • Spectroscopic analysis confirmed that both NS3 and NS5A proteins possess a mixture of alpha-helical and beta-sheet secondary structures.

Conclusions:

  • NS3 and NS5A proteins of HCV genotype 3a were successfully over-expressed and purified in milligram quantities.
  • The yield of purified NS3 is fourfold higher than previously reported.
  • Structural analysis indicated that protein activity is not significantly altered by expression temperature, and the secondary structure composition is consistent with predictions, paving the way for further biophysical and biochemical characterization.