Evidence map›Paper›PMID 40804408›Full record

ArticleVirology journal2025

Structural and functional roles of conserved residues of human papillomavirus (HPV) E2 protein and biological consequences.

Sean Fletcher, Esther E Biswas-Fiss, Subhasis B Biswas

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In one paragraph

Article in Virology journal, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.

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3citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

Who cites it

3 citing papers in PubMed.

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4 · The record

Corrections and comments

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5 · Who and what money

Authors and funding

3 authors.

Sean FletcherDepartment of Medical and Molecular Sciences, College of Health Sciences, University of Delaware, Newark, DE, 19716, USA.
Esther E Biswas-FissDepartment of Medical and Molecular Sciences, College of Health Sciences, University of Delaware, Newark, DE, 19716, USA.
Subhasis B BiswasDepartment of Medical and Molecular Sciences, College of Health Sciences, University of Delaware, Newark, DE, 19716, USA. biswassb@udel.edu.

Funding

Predictive Modeling & Optimal Control Framework for Model-Based Epidemic Response in DelawareP20GM103446 · NIGMS · UNIVERSITY OF DELAWARE · PI Shawn W Polson · 2012 to 2026
$67.2M
NIGMS NIH HHS P20 GM103446
6 · The paper itself

Abstract

backgroundHuman papillomavirus (HPV) is a prevalent viral pathogen that causes a variety of malignancies, including cervical cancer, one of the leading causes of cancer-related deaths among women worldwide. The HPV E2 protein is a central regulator of viral replication and oncogene expression, making it a critical determinant of HPV-associated malignancies. While its core functions are conserved, variations within the E2 protein are thought to contribute to the differential oncogenic potential among HPV types, though the structural basis for this remains incompletely understood. Previous research from our laboratory suggests that mutations within a 12-base pair segment of the long control region that encompasses the E2 binding sites may influence the oncogenic potential of certain HPV strains.

methodsComputational methods, including multiple sequence alignment, phylogenetic analysis, and protein structural modeling were employed to identify conserved regions and correlate these with potential cancer-associated mutations in the coding region.

resultsStructural modeling using AlphaFold3 and visualization in PyMOL revealed that conserved E2 residues cluster near the DNA-binding surface in the C-terminal domain and at critical interaction sites in the N-terminal transactivation domain, important for E1 DNA helicase binding and potentially other host factor interactions. Notably, species-specific adaptations, including the T309P substitution in the HPV52 subfamily B2, which may induce structural changes in the DNA-binding domain, and variations in the 12-base pair spacer, could modulate oncogene expression.

conclusionsCollectively, these findings refine our understanding of E2's essential role in viral pathogenesis and highlight promising targets for therapeutic intervention in high-risk HPV strains.

Indexed as

DNA-Binding ProteinsOncogene Proteins, ViralPapillomaviridaeBinding SitesConserved SequenceFemaleHuman Papillomavirus VirusesHumansModels, MolecularPapillomavirus InfectionsPhylogenyProtein ConformationSequence AlignmentDNA-Binding ProteinsOncogene Proteins, ViralDNA-binding domainE2 proteinHuman papillomavirusOncogenic potentialSequence conservationStructural modelingT309P mutationTransactivation domain

Identifiers

PMID40804408
PMCPMC12345011

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.