Article
Human immunodeficiency virus type 1 Gag assembly through assembly intermediates.
Kitasato Institute of Life Sciences, Kitasato University, Shirokane 5-9-1, Minato-ku, Tokyo 108-8641, Japan.
Journal of Biological Chemistry (impact factor:
4.77).
08/2004;
279(30):31964-72.
DOI:10.1074/jbc.M313432200
pp.31964-72
Source: PubMed
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Citations (0)
- Cited In (3)
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Article: Production of human papillomavirus type 16 L1 virus-like particles by recombinant Lactobacillus casei cells.
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ABSTRACT: Infections with human papillomavirus type 16 (HPV-16) are closely associated with the development of human cervical carcinoma, which is one of the most common causes of cancer death in women worldwide. At present, the most promising vaccine against HPV-16 infection is based on the L1 major capsid protein, which self-assembles in virus-like particles (VLPs). In this work, we used a lactose-inducible system based on the Lactobacillus casei lactose operon promoter (plac) for expression of the HPV-16 L1 protein in L. casei. Expression was confirmed by Western blotting, and an electron microscopy analysis of L. casei expressing L1 showed that the protein was able to self-assemble into VLPs intracellularly. The presence of conformational epitopes on the L. casei-produced VLPs was confirmed by immunofluorescence using the anti-HPV-16 VLP conformational antibody H16.V5. Moreover, sera from mice that were subcutaneously immunized with L. casei expressing L1 reacted with Spodoptera frugiperda-produced HPV-16 L1 VLPs, as determined by an enzyme-linked immunosorbent assay. The production of L1 VLPs by Lactobacillus opens the possibility for development of new live mucosal prophylactic vaccines.Applied and Environmental Microbiology 02/2006; 72(1):745-52. · 3.83 Impact Factor -
Article: [The structural protein Gag of the gypsy retrovirus forms virus-like particles in the bacterial cell].
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ABSTRACT: The amino acid sequence of the drosophila retrovirus MDG4 (gypsy) structural protein Gag does not contain a canonical motif known for the majority of vertebrate retroviruses. Moreover, the protein translation can theoretically begin with two separated initiation codons located within its unique open reading frame. We designed constructs for expression of two theoretically possible variants of Gag polypeptide and investigated an ability of the each product to form virus-like particles in the bacterial cell, i.e. in the absence of eukaryotic cell factors. The results obtained showed that the both variants of the gypsy protein Gag form globular particles in the bacterial cell.Molekuliarnaia biologiia 45(3):517-23. -
Article: Structural protein GAG of the gypsy retrovirus forms virus-like particles in the bacterial cell
[show abstract] [hide abstract]
ABSTRACT: Amino acid sequence of the drosophila retrovirus MDG4 (gypsy) structural protein Gag does not contain a canonical motif known for the majority of vertebrate retroviruses. Moreover, protein translation can theoretically begin with two separated initiation codons located within its unique open reading frame. We designed constructs for expression of two theoretically possible variants of Gag polypeptide and investigated the ability of each product to form virus-like particles in the bacterial cell, i.e., in the absence of eukaryotic cell factors. The results obtained showed that both variants of the gypsy protein Gag form globular particles in the bacterial cell. Keywords gypsy –retrovirus–retrotransposon–virus-like particle–structural protein–Gag–bacterial expression systemMolecular Biology 04/2012; 45(3):472-478. · 0.66 Impact Factor
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Keywords
30 degrees C
30 degrees C reaction
60 S multimer
60 S multimers
assembly intermediates
complete particles
crescent-shaped structures
double electron-dense layers
E. coli expression
Gag assembly
Gag expression
Gag multimer
higher order
protein refolding
purified Gag protein
small patches
spherical particles
virus-like particles
vitro assembly reaction
vitro assembly reactions