Assembly of tobacco mosaic virus and TMV-like pseudovirus particles in Escherichia coli.
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Summary
In addition to providing a rapid, inexpensive and convenient system to produce, protect and recover chimeric gene transcripts of any length or sequence, this E. coli system also offers a rapid approach for studying the molecular requirements for plant virus "self-assembly" in vivo.
- Type
- article
- Published
- 1994-01-01
- Cited by
- 12
- References
- 39
- OpenAlex
- https://openalex.org/W7518274
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32345299
Keywords
Computer science
References
- Molecular assembly of tobacco mosaic virus in vitro.
- Reduced Photosystem II Activity and Accumulation of Viral Coat Protein in Chloroplasts of Leaves Infected with Tobacco Mosaic Virus.
- Direct visualization of the structure of the "20 S" aggregate of coat protein of tobacco mosaic virus. The "disk" is the major structure at pH 7.0 and the Proto-helix at lower pH.
- Structures and roles of the polymorphic forms of tobacco mosaic virus protein. I. Sedimentation studies.
- Assembly of hybrid RNAs with tobacco mosaic virus coat protein. Evidence for incorporation of disks in 5'-elongation along the major RNA tail.
- ASSEMBLY AND STABILITY OF THE TOBACCO MOSAIC VIRUS PARTICLE.
- Visualization of protein-nucleic acid interactions in a virus. Refined structure of intact tobacco mosaic virus at 2.9 A resolution by X-ray fiber diffraction.
- Use of T7 RNA polymerase to direct expression of cloned genes.
- Packaging of recombinant RNA molecules into pseudovirus particles directed by the origin-of-assembly sequence from tobacco mosaic virus RNA.
- Pseudovirions of tobacco mosaic virus.
- Unusual segmental flexibility in a region of tobacco mosaic virus coat protein
- The cause of irreversible polymerisation of tobacco mosaic virus protein
- Nucleotide sequence of tobacco mosaic virus RNA.
- Polarity of the RNA in the tobacco mosaic virus particle and the direction of protein stripping in sodium dodecyl sulphate
- Development of a Genetically–Engineered, Candidate Polio Vaccine Employing the Self–Assembling Properties of the Tobacco Mosaic Virus Coat Protein
- Disassembly of Tobacco Mosaic Virus by Membrane Lipid Isolated from Tobacco Leaves and Polyornithine
- States of aggregation of tobacco mosaic virus protein.
- Switching in the self-assembly of tobacco mosaic virus.
- Efficient translation of the coat protein cistron of tobacco mosaic virus in a cell-free system from Escherichia coli.
- Tobacco mosaic virus RNA enters chloroplasts in vivo.
Cited by
- Solid-state 31P NMR spectroscopy of bacteriophage M13 and tobacco mosaic virus
- Fabrication and characterization of gold nano-wires templated on virus-like arrays of tobacco mosaic virus coat proteins
- Reversible and multi-cyclic protein-protein interaction in bacterial cellulosome-mimic system using rod-shaped viral nanostructure.
- Carboxylate-directed in vivo assembly of virus-like nanorods and tubes for the display of functional peptides and residues.
- Management of Tobacco Mosaic Virus through Natural Metabolites
- 3D ENGINEERING OF VIRUS-BASED PROTEIN NANOTUBES AND RODS: A TOOLKIT FOR GENERATING NOVEL NANOSTRUCTURED MATERIALS
- Functionalized Tobacco Mosaic Virus Coat Protein Monomers and Oligomers as Nanocarriers for Anti-Cancer Peptides
- Virus-Like Particles: Applications in Reverse Vaccinology
- Application of Engineered Viral Nanoparticles in Materials and Medicine
- RIBONUCLEASE RESISTANT RNA PREPARATION AND UTILIZATION 75 Inventors :
- NMR SPECTROSCOPY OF BACTERIOPHAGE M13 AND TOBACCO MOSAIC VIRUS
- 8 Artificial Genes for Chimeric Virus-Like Particles
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