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1.
Virologica Sinica ; (6): 347-356, 2011.
Article Dans Chinois | WPRIM | ID: wpr-423815

Résumé

The function of the herpes simplex virus type 1(HSV-1)UL4 protein is still elusive. Our objective is to investigate the subcellular transport mechanism of the UL4 protein. In this study,fluorescence microscopy was employed to investigate the subcellular localization of UL4 and characterize the transport mechanism in living cells. By constructing a series of deletion mutants fused with enhanced yellow fluorescent protein(EYFP),the nuclear export signals(NES)of UL4 were for the first time mapped to amino acid residues 178 to 186. In addition,the N-terminal 19 amino acids are identified to be required for the granule-like cytoplasmic pattern of UL4.Furthermore,the UL4 protein was demonstrated to be exported to the cytoplasm through the NES in a chromosomal region maintenance 1(CRM l)-dependent manner involving RanGTP hydrolysis.

2.
Virologica Sinica ; (6): 153-161, 2009.
Article Dans Chinois | WPRIM | ID: wpr-406606

Résumé

The herpes simplex virus type 1 (HSV-1) VP22, is one of the most abundant HSV-1 tegument proteins with an average stoichiometry of 2 400 copies per virion and conserved among alphaherpesvirinae. Many functions are attributed to VP22, including nuclear localization, chromatin binding, microtubule binding, induction of microtubule reorganization, intercellular transport, interaction with cellular proteins, such as template activating factor I (TAF-I) and nonmuscle myosin II A (NMIIA), and viral proteins including tegument protein VP16, pUS9 and pUL46, glycoprotein E (gE) and gD. Recently, many novel functions performed by the HSV-1 VP22 protein have been shown, including promotion of protein synthesis at late times in infection, accumulation of a subset of viral mRNAs at early times in infection and possible transcriptional regulation function.

3.
Virologica Sinica ; (6): 399-405, 2008.
Article Dans Chinois | WPRIM | ID: wpr-406899

Résumé

The herpes simplex virus type 1 (HSV-1) infected-cell protein 27 (ICP27) is an essential,highly conserved protein involved in various steps of HSV-1 gene regulation as well as in the shut-off of host gene expression during infection.It functions primarily at the post-transcriptional level in inhibiting precursor mRNA splicing and in promoting nuclear export of viral transcripts.Recently,many novel functions performed by the HSV-1 ICP27 protein were shown,including leptomycin B resistance,inhibition of the type I interferon signaling,regulation of the viral mRNA translation and determining the composition of HSV-1 virions.

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