Related Experiment Video
Updated: Feb 7, 2026

Genotypic Inference of HIV-1 Tropism Using Population-based Sequencing of V3
Published on: December 27, 2010
Comparative genetic variability in HIV-1 subtype C p24 Gene in early age groups of infants
Uma Sharma1,2, Sunil Gupta2, S Venkatesh2
1Molecular Virology Laboratory, Department of Biotechnology, Jamia Millia Islamia, Central University, New Delhi, 110025, India.
Insights
Studying the p24 gene in vertically transmitted HIV-1 in infants reveals mutations that may affect virus assembly. Viral variability decreases with infant age, suggesting evolution under selection pressure.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Vertical transmission of Human Immunodeficiency Virus type 1 (HIV-1) in infants is a critical concern for disease progression.
- The p24 protein plays a vital role in HIV-1 assembly and maturation, making its genetic characteristics important for study.
Purpose of the Study:
- To investigate the genotypic characteristics of the HIV-1 p24 gene in vertically infected infants.
- To analyze amino acid heterogeneity and identify mutations in functional regions of the p24 protein in different infant age groups.
Main Methods:
- Sequencing and amino acid heterogeneity analysis of the p24 gene from 79 HIV-1 positive infant blood samples.
- Categorization of infants into acute (≤6 months) and early (>6-18 months) age groups.
- Utilized Protein Variation Effect Analyzer and HLA class 1 binding peptide analysis.
Main Results:
- Frequent amino acid substitutions were observed in functional motifs of the p24 gene in both acute and early infant groups.
- Specific mutations, including an insertion in the acute group and a deletion in the early group, were identified.
- Deleterious mutations and amino acid heterogeneity were higher in the acute infant group compared to the early group.
- Viral variability decreased with increasing infant age, indicating evolution under positive selection pressure.
Conclusions:
- Mutations in the p24 gene may potentially impair HIV-1 structure and assembly in vertically infected infants.
- The observed decrease in viral variability with age suggests viral adaptation.
- Identified epitopes (TPQDLNTML, RMYSPVSIL) may be valuable for developing epitope-based HIV-1 vaccines.
Abstract:
It is important to study the molecular properties of vertically transmitted viruses in early infancy to understand disease progression. P24 having an important role in virus assembly and maturation was selected to explore the genotypic characteristics. Blood samples, obtained from 82 HIV-1 positive infants, were categorized into acute (≤ 6 months) and early (> 6-18 months) age groups. Of the 82 samples, 79 gave amplification results for p24, which were then sequenced and analysed. Amino acid heterogeneity analysis showed that substitutions were more frequent. Several substitution mutations were present in some of the sequences of both the age groups in the functional motifs of the gene namely Beta hairpin, CyPA binding loop, residues L136 and L190, linker region and major homology region. In the acute age group, an insertion of Asparagine residue (N5NL6) was observed in the β hairpin region in one of the sequences. This insertion was accompanied with analogous substitutions of N5Q, Q7L and G8R. In the early age group, a deletion of two residues; VK181-182, was observed at the C-terminal end in one of the sequences. These mutations may impair the structure of the protein leading to defective virus assembly. Protein variation effect analyzer software showed that deleterious mutations were more in the acute than the early age group. Variability analysis revealed that the amino acid heterogeneity was comparatively higher in the acute than the early age group. Variability in the virus was decreasing with the increasing age of the infants indicating that the virus is gradually evolving under positive selection pressure. HLA class 1 binding peptide analysis showed that the epitopes TPQDLNTML and RMYSPVSIL may be helpful in designing epitope based vaccine.
More Related Videos
10:12Author Spotlight: Exploring the Role of Unfolded Protein Response in HIV-1 Replication and Infectivity
Published on: June 14, 2024
14:23A Restriction Enzyme Based Cloning Method to Assess the In vitro Replication Capacity of HIV-1 Subtype C Gag-MJ4 Chimeric Viruses
Published on: August 31, 2014
Related Concept Videos
Mutation, Gene Flow, and Genetic Drift
Gene Flow
Animal Mitochondrial Genetics
Genetics of Speciation
What is Genetic Engineering?
What is Population Genetics?