Adenovirus-induced leakage of co-endocytosed macromolecules into the cytosol.
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Summary
The conclusion is that entry of adenovirus into the cell involves its passage of an acidic compartment (probably the endocytic vesicle) and that co-endocytosed macromolecules are released into the cytosol on entry.
- Type
- article
- Published
- 1985-12-01
- Cited by
- 20
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W1966902388
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25030964
Keywords
Cytosol, Endocytic cycle, Fluorescein, Chemistry, Fluorescein isothiocyanate
References
- Biochemical studies on adenovirus multiplication. IV. Isolation, purification, and chemical analysis of adenovirus.
- Uncoating of adenovirus type 2
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- Virus-Receptor Interaction in an Adenovirus System
- Role of a low-pH environment in adenovirus enhancement of the toxicity of a Pseudomonas exotoxin-epidermal growth factor conjugate
- Adenovirus-dependent release of 51Cr from KB cells at an acidic pH.
- Uncoating of influenza virus in endosomes
- Penetration of Host Cell Membranes by Adenovirus 2
- Isolation and characterization of monopinocytotic vesicles containing polyomavirus from the cytoplasm of infected mouse kidney cells
- Infectious Cell Entry Mechanism of Influenza Virus
- pH-dependent fusion between the Semliki Forest virus membrane and liposomes.
- Membrane fusion activity of reconstituted vesicles of influenza virus hemagglutinin glycoproteins.
- Fluorescence probe measurement of the intralysosomal pH in living cells and the perturbation of pH by various agents.
- Viral infection permeabilizes mammalian cells to protein toxins.
- Pathway of vesicular stomatitis virus entry leading to infection.
- Penetration of Semliki Forest virus from acidic prelysosomal vacuoles.
- Interaction of influenza virus hemagglutinin with target membrane lipids is a key step in virus-induced hemolysis and fusion at pH 5.2.
- Mechanism of entry into the cytosol of poliovirus type 1: requirement for low pH
- Endocytosis of liposomes and intracellular fate of encapsulated molecules: encounter with a low pH compartment after internalization in coated vesicles.
- Modification of membrane permeability induced by animal viruses early in infection.
Cited by
- Establishment of an assay to determine adenovirus-induced endosome rupture required for receptor-mediated gene delivery
- Chapter 9 Fusion of Viral Envelopes with Cellular Membranes
- Mechanism of enhancement of DNA expression consequent to cointernalization of a replication-deficient adenovirus and unmodified plasmid DNA
- The role of the adenovirus protease on virus entry into cells.
- Human adenovirus-host cell interactions: comparative study with members of subgroups B and C
- Ebola Virus Uses Clathrin Mediated Endocytosis as an Entry Pathway
- Adenovirus triggers macropinocytosis and endosomal leakage together with its clathrin-mediated uptake
- Virus interaction with the apical junctional complex.
- Cellular uptake and nuclear delivery of recombinant adenovirus penton base.
- Structural and functional determinants in adenovirus type 2 penton base recombinant protein
- Novel Fiber-Dependent Entry Mechanism for Adenovirus Serotype 5 in LacrimalAcini
- Imaging the adenovirus infection cycle
- Adenovirus endocytosis
- CRM1 Promotes Capsid Disassembly and Nuclear Envelope Translocation of Adenovirus Independently of Its Export Function
- Human Adenovirus Serotype 3 Infection Modulates the Biogenesis and Composition of Lung Cell-Derived Extracellular Vesicles
- Adenovirus
- Adenovirus endocytosis
- Stearylated Macropinocytosis-Inducing Peptides Facilitating the Cellular Uptake of Small Extracellular Vesicles.
- Human adenovirus serotype 5 infection dysregulates cysteine, purine, and unsaturated fatty acid metabolism in fibroblasts
- Novel Fiber-Dependent Entry Mechanism for Adenovirus Serotype 5 in Lacrimal Acini (cid:1)
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