Intrinsic disorder mediates hepatitis C virus core–host cell protein interactions
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Summary
It is demonstrated that viruses may use intrinsic disorder to target multiple cellular proteins with the same amino acid sequence and provides a framework for characterizing the binding partners of other disordered regions in viral and cellular proteomes.
- Type
- article
- Published
- 2015-02-01
- Cited by
- 56
- References
- 135
- Access
- Open access
- OpenAlex
- https://openalex.org/W25424537
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30778718
Keywords
Humanities, Geography, Art
References
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- Bidirectional Lipid Droplet Velocities Are Controlled by Differential Binding Strengths of HCV Core DII Protein
- RNA chaperoning and intrinsic disorder in the core proteins of Flaviviridae
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- A genome-scale protein interaction profile of Drosophila p53 uncovers additional nodes of the human p53 network
- Hepatitis C virus core protein recruits nucleolar phosphoprotein B23 and coactivator p300 to relieve the repression effect of transcriptional factor YY1 on B23 gene expression
- Hepatitis C Virus Core Protein Binds to a DEAD Box RNA Helicase*
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- Mining alpha-helix-forming molecular recognition features with cross species sequence alignments.
- Recognition of enolase in the Escherichia coli RNA degradosome.
Cited by
- Investigating the modulation of viral translation by the Hepatitis C virus nonstructural protein 5A
- DDX3X Biomarker Correlates with Poor Survival in Human Gliomas
- Convergent evolution and mimicry of protein linear motifs in host-pathogen interactions.
- Molecular recognition features (MoRFs) in three domains of life.
- Protein intrinsic disorder within the Potyvirus genus: from proteome-wide analysis to functional annotation.
- Using Integrated Bioinformatics Strategy to Identify Critical Factors for the Structural Integrity of Salmonella T3SS
- How to Predict Disorder in a Protein of Interest.
- Prediction of Protein Secondary Structure
- Epigallocatechin gallate, an active green tea compound inhibits the Zika virus entry into host cells via binding the envelope protein.
- Comparing NMR and X-ray protein structure: Lindemann-like parameters and NMR disorder
- MOLECULAR PATHOGENESIS OF HEPATITIS B VIRUS AND HEPATITIS C VIRUS INFECTIONS
- Conformational Plasticity of Hepatitis C Virus Core Protein Enables RNA-Induced Formation of Nucleocapsid-like Particles.
- Molecular Recognition Features in Zika Virus Proteome.
- Identification and Initial Characterization of the Effectors of an Anther Smut Fungus and Potential Host Target Proteins
- Using thermodynamic parameters to calibrate a mechanistic dose-response for infection of a host by a virus
- Ultrastructural Localization and Molecular Associations of HCV Capsid Protein in Jurkat T Cells
- Contrasting Function of Structured N-Terminal and Unstructured C-Terminal Segments of Mycobacterium tuberculosis PPE37 Protein
- On the Regularities of the Polar Profiles of Proteins Related to Ebola Virus Infection and their Functional Domains
- Intrinsic structural versatility of the highly conserved 412-423 epitope of the Hepatitis C Virus E2 protein.
- Understanding the interactability of chikungunya virus proteins via molecular recognition feature analysis
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