Genetic Characterization of Hepatitis B Virus in Peripheral Blood Leukocytes: Evidence for Selection and Compartmentalization of Viral Variants with the Immune Escape G145R Mutation

Author:

Datta Sibnarayan1,Panigrahi Rajesh1,Biswas Avik1,Chandra Partha K.1,Banerjee Arup1,Mahapatra Pradip K.2,Panda Chinmoy K.3,Chakrabarti Shekhar14,Bhattacharya Sujit K.14,Biswas Kuntal5,Chakravarty Runu1

Affiliation:

1. ICMR Virus Unit, Kolkata, India

2. Department of Chemistry, Jadavpur University, Kolkata, India

3. Chittaranjan National Cancer Institute (CNCI), Kolkata, India

4. National Institute of Cholera and Enteric Diseases (NICED), Kolkata, India

5. Medical College and Hospital, Kolkata, India

Abstract

ABSTRACT The compartmentalization of viral variants in distinct host tissues is a frequent event in many viral infections. Although hepatitis B virus (HBV) classically is considered hepatotropic, it has strong lymphotropic properties as well. However, unlike other viruses, molecular evolutionary studies to characterize HBV variants in compartments other than hepatocytes or sera have not been performed. The present work attempted to characterize HBV sequences from the peripheral blood leukocytes (PBL) of a large set of subjects, using advanced molecular biology and computational methods. The results of this study revealed the exclusive compartmentalization of HBV subgenotype Ae/A2-specific sequences with a potent immune escape G145R mutation in the PBL of the majority of the subjects. Interestingly, entirely different HBV genotypes/subgenotypes (C, D, or Aa/A1) were found to predominate in the sera of the same study populations. These results suggest that subgenotype Ae/A2 is selectively archived in the PBL, and the high prevalence of G145R indicates high immune pressure and high evolutionary rates of HBV DNA in the PBL. The results are analogous to available literature on the compartmentalization of other viruses. The present work thus provides evidence in favor of the compartment-specific abundance, evolution, and emergence of the potent immune escape mutant. These findings have important implications in the field of HBV molecular epidemiology, transmission, transfusion medicine, organ transplantation, and vaccination strategies.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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