Target intelligence / Profile preview

Human rhinovirus 16 capsid protein VP1 (HRV16 VP1) (HRV16 VP1)

Target
HRV16 VP1
Molecular classification
Viral capsid protein, Structural protein
01

Overview

Human rhinovirus 16 (HRV16) capsid protein VP1 is a major structural protein that forms the icosahedral shell of the virus and contains a specialized hydrophobic pocket located beneath the "canyon" floor (UniProt P09410). This pocket is a critical regulatory site that normally binds a host-derived "pocket factor," typically a fatty acid, which maintains the structural integrity of the virion (PubMed: 11907224). During infection, the displacement of this factor is a prerequisite for the conformational shifts that allow the virus to uncoat and release its genomic RNA into the host cytoplasm (PubMed: 10481563). The VP1 pocket is a well-validated therapeutic target for "capsid binders" such as Pleconaril, which occupy the space to stabilize the capsid and prevent uncoating (PubChem CID 104314). Additionally, drug binding in this pocket can cause a conformational bulge in the canyon floor, potentially interfering with the virus's ability to bind to its primary receptor, Intercellular Adhesion Molecule 1 (ICAM-1) (PubMed: 15680415). Despite its potential, the high mutation rate of the VP1 pocket often leads to the rapid emergence of drug-resistant viral variants (PubMed: 12163546).

Other names
Viral protein 1VP1 hydrophobic pocketCanyon floor pocketCapsid protein VP1HRV16 VP1 pocket
02

Mechanism of action

Capsid binders occupy the VP1 hydrophobic pocket, displacing the natural pocket factor and increasing the rigidity of the viral capsid. This stabilization prevents the pH-dependent conformational changes required for viral uncoating and RNA release into the host cell (PubMed: 11907224, 10481563). In some instances, drug binding also induces structural changes in the viral canyon that inhibit attachment to the host receptor ICAM-1 (PubMed: 15680415).

03

Biological functions

Viral entryViral uncoatingViral assemblyHost cell attachment
04

Disease associations

InfectionCommon coldAsthma exacerbationChronic obstructive pulmonary disease exacerbation
05

Safety considerations

Rapid development of drug resistance due to mutations in the VP1 pocket (PubMed: 12163546)Potential for drug-drug interactions via CYP3A4 induction, as seen with Pleconaril (FDA)Limited efficacy across the broad range of rhinovirus serotypes and speciesChallenges in achieving therapeutic concentrations in the nasal mucosa
06

Interacting drugs

Pleconaril

4 more in the full profile.

07

Biomarkers

Viral load in nasal washingsSymptom severity scores (e.g., Jackson score)Nasal proinflammatory cytokine levels (e.g., IL-6, IL-8)Time to resolution of symptoms

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