This work predicted the interactions between the capsid (Cp) and envelope proteins (S/M/LHBs) of the hepatitis B virus using a recently established mutation-driven deep-learning model, as well as coevolution signatures that serve as markers of physical interactions and/or functional relationships.
Abstract
We here predicted the interactions between the capsid (Cp) and envelope proteins (S/M/LHBs) of the hepatitis B virus using a recently established mutation-driven deep-learning model, as well as coevolution signatures that serve as markers of physical interactions and/or functional relationships. The sequence-based analyses reveal putative protein-protein interaction (PPI) hotspots in proteins, and identify abundant coevolved residues within and across proteins. We analyze the results with a focus on the intermolecular interactions between Cp and the large envelope protein LHBs, especially its disordered preS domain. We compare the predicted PPI interface sites to previous evidence on PPIs, derived from mutational analyses described in the literature. We equally integrate experimental NMR data that provide a rationale for the previous observation that spike-binding peptides inhibit core-envelope interactions. Our work sheds new light on the molecular mechanisms at play on HBV envelopment, and provides starting points for the experimental investigation of these interactions using structural and molecular virology approaches.
A protein-protein interaction network from the genes associated with the dengue infection was constructed and proteins were ranked by the topological centrality to identify hub regulators and validated POLR2A and ELOC as hub genes in the transcriptional regulation network associated with dengue.
S. M. Zaidh, M. H. Mohamed Asrarullah, Kathiravan Muthukumaradoss et al.· Journal of Pharmaceutical In...· 0 citations
The SARS-CoV-2 envelope protein (protein E) is a small but multifunctional structural protein that plays a critical role in viral assembly, budding, and pathogenesis, making it an attractive target for therapeutic intervention. This study investigated the interaction between the SARS-CoV-2 envelope protein (wild type a...
Afifah Husni Riani, Surya Rosa Putra, Devy Maulidya Cahyani et al.· EPJ Web of Conferences· 0 citations
This work demonstrates the utility of MD-driven contact network analysis and clustering approaches in uncovering conserved interfacial motifs and adaptive strategies, providing a computational framework for monitoring and interpreting the molecular evolution of emerging SARS-CoV-2 variants.
It is demonstrated that genetically encoded, site-specific photo-crosslinking enables selective capture of transient interactions that are often missed by nonspecific 254 nm UV crosslinking approaches and highlights Orf3a as a multifunctional protein that engages diverse host pathways.
Eryn Lundrigan, Noreen Ahmed, J. P. Pezacki· Protein engineering, design...· 0 citations
Previous research has shown that there is an interaction between Influenza A viral surface neuraminidase (NA) and the host endoplasmic reticulum chaperone GRP78 in the early phases of NA production in the endoplasmic reticulum. In this study, we predict the binding sites of neuraminidase for H1N1, H3N2, and H5N1 strain...
Yasser M. Gebril, Menna Allah A. Ibrahim, Wael M. Elshemey et al.· Journal of Biomolecular Stru...· 0 citations
Accurate prediction of mutation-induced changes in protein-protein affinity remains a central challenge in computational biophysics and protein engineering. Here we present a physics-based scoring method for predicting the effects of single amino acid substitutions on protein-protein and protein-peptide binding affinit...
Jakob Noske, Thibaud Lepoivre, Maxim Janzen et al.· bioRxiv· 0 citations
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