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MeSH Review

Simian T-lymphotropic virus 1

 
 
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Disease relevance of Simian T-lymphotropic virus 1

  • Polymerase chain reaction analysis of the DNA from the cell lines and tissues from the lymphomatous animal demonstrated the presence of a 536-bp DNA fragment that was 90% identical to EBV polymerase gene sequences, whereas the same DNA was consistently negative for STLV-I/II sequences [1].
  • The results of comparative sequence analysis demonstrated that STLV-1marc1 was not closely related to any known STLV-1 strain, was the most divergent strain of the HTLV-1-STLV-1 group, and lacked the ATG initiation codons corresponding to the p12 and p13 proteins of HTLV-1 [2].
 

High impact information on Simian T-lymphotropic virus 1

  • Nucleotide and/or amino acid sequence analyses of complete or partial long terminal repeat (LTR), env, and rex regions showed that HTLV-1 subtype D-specific mutations were found in three of four STLV-1-infected mandrills, while the remaining monkey was infected by a different STLV-1 subtype [3].
  • The partial env gene gene sequences of all four STLV-1 isolates from Sukhumi lymphomatous baboons were 97 to 100% similar to the sequence of known rhesus STLV-1 and only 85% homologous with the sequence of conventional baboon STLV-1 [4].
  • STLV-I tax and pol products were also detected in PBMC from 4 of 4 infected AGM and 4 of 4 infected baboons, each of which were also Western-blot-positive and p24-antigen-capture-positive [5].
  • A 420 nucleotide fragment of the env (gp 46) gene (analysed from 3 different DNA's) revealed 16.2% nucleotide divergence to the Japanese strain of HTLV-I and 14.8% to the Japanese strain of STLV-I including one deletion of a triplet [6].
  • The sequences obtained and all PTLV-I (HTLV-I and STLV-I) env sequences available in the literature were analyzed [7].
 

Biological context of Simian T-lymphotropic virus 1

  • The DNA sequences from env (378 bp), pol (212 bp), and LTR (705 bp) were determined for 5, 5, and 2 Mikumi STLV-1 isolates, respectively [8].
 

Anatomical context of Simian T-lymphotropic virus 1

  • These investigations used two STLV-I and four different HTLV-I/II transformed cell lines to quantitate constitutive cytokine release, p24 antigen production, and to correlate gag p24 antigen and cytokine release [9].
 

Gene context of Simian T-lymphotropic virus 1

  • When sera from 10 species of non-human primates maintained at the Institute of Primate Research were screened for STLV-I infection, anti-STLV-I antibodies were detected in 12%, 12%, 23% and 38% of the olive baboons, yellow baboons, African green monkeys and lowland Sykes' monkeys, respectively [10].
  • A divergence of 0.3 to 1.6% between the Cosmopolitan strains was observed, while the divergence between the HTLV-I and STLV-I strains ranged from 6.3 to 7% [11].

References

  1. A novel Epstein-Barr virus-like virus, HV(MNE), in a Macaca nemestrina with mycosis fungoides. Rivadeneira, E.D., Ferrari, M.G., Jarrett, R.F., Armstrong, A.A., Markham, P., Birkebak, T., Takemoto, S., Johnson-Delaney, C., Pecon-Slattery, J., Clark, E.A., Franchini, G. Blood (1999) [Pubmed]
  2. Molecular characterization and phylogenetic analyses of a new, highly divergent simian T-cell lymphotropic virus type 1 (STLV-1marc1) in Macaca arctoides. Mahieux, R., Pecon-Slattery, J., Gessain, A. J. Virol. (1997) [Pubmed]
  3. Simian T-cell lymphotropic virus type 1 from Mandrillus sphinx as a simian counterpart of human T-cell lymphotropic virus type 1 subtype D. Mahieux, R., Chappey, C., Georges-Courbot, M.C., Dubreuil, G., Mauclere, P., Georges, A., Gessain, A. J. Virol. (1998) [Pubmed]
  4. Interspecies transmission of macaque simian T-cell leukemia/lymphoma virus type 1 in baboons resulted in an outbreak of malignant lymphoma. Voevodin, A., Samilchuk, E., Schätzl, H., Boeri, E., Franchini, G. J. Virol. (1996) [Pubmed]
  5. Detection of simian T-lymphotropic virus type I using the polymerase chain reaction. Dezzutti, C.S., Lazo, A., Yee, J.Y., Blakeslee, J.R., Mathes, L.E., Brown, B.G., Lairmore, M.D. Int. J. Cancer (1992) [Pubmed]
  6. Detection and characterization of T-cell leukemia virus-like proviral sequences in PBL and tissues of baboons by PCR. Schatzl, H., Yakovleva, L., Lapin, B., Rose, D., Inzhiia, L., Gaedigk-Nitschko, K., Deinhardt, F., von der Helm, K. Leukemia (1992) [Pubmed]
  7. New insights in HTLV-I phylogeny by sequencing and analyzing the entire envelope gene. Capdepont, S., Londos-Gagliardi, D., Joubert, M., Correze, P., Lafon, M.E., Guillemain, B., Fleury, H.J. AIDS Res. Hum. Retroviruses (2005) [Pubmed]
  8. Simian T-lymphotropic virus type 1 (STLV-1) infection in wild yellow baboons (Papio hamadryas cynocephalus) from Mikumi National Park, Tanzania. Voevodin, A., Samilchuk, E., Allan, J., Rogers, J., Broussard, S. Virology (1997) [Pubmed]
  9. Constitutive cytokine release by simian T-cell lymphotrophic virus type I (STLV-I) and human T-cell lymphotrophic virus types I/II (HTLV-I/II) transformed cell lines. Lazo, A., Bailer, R.T. J. Med. Primatol. (1996) [Pubmed]
  10. The prevalence of antibodies to simian T-cell leukaemia/lymphotropic virus (STLV-I) in non-human primate colonies in Kenya. Mwenda, J.M., Sichangi, M.W., Isahakia, M., van Rensburg, E.J., Langat, D.K. Ann. Trop. Med. Parasitol. (1999) [Pubmed]
  11. Sequence variation and subtyping of human and simian T-cell lymphotropic virus type I strains from South Africa. Englebrecht, S., van Rensburg, E.J., Robson, B.A. J. Acquir. Immune Defic. Syndr. Hum. Retrovirol. (1996) [Pubmed]
 
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