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MeSH Review

Gammaretrovirus

 
 
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Disease relevance of Gammaretrovirus

 

High impact information on Gammaretrovirus

 

Chemical compound and disease context of Gammaretrovirus

  • The NH2-terminal cleavage product, MA(p10), bound all RNA fragments tested, while the COOH-terminal peptides with a sequence common to mammalian type C retroviruses had little affinity for RNA [10].
 

Biological context of Gammaretrovirus

 

Gene context of Gammaretrovirus

References

  1. Many nonmammalian cells exhibit postentry blocks to transduction by gammaretroviruses pseudotyped with various viral envelopes, including vesicular stomatitis virus G glycoprotein. Dirks, C., Miller, A.D. J. Virol. (2001) [Pubmed]
  2. Charged assembly helix motif in murine leukemia virus capsid: an important region for virus assembly and particle size determination. Cheslock, S.R., Poon, D.T., Fu, W., Rhodes, T.D., Henderson, L.E., Nagashima, K., McGrath, C.F., Hu, W.S. J. Virol. (2003) [Pubmed]
  3. Identification and characterization of an exogenous retrovirus from atlantic salmon swim bladder sarcomas. Paul, T.A., Quackenbush, S.L., Sutton, C., Casey, R.N., Bowser, P.R., Casey, J.W. J. Virol. (2006) [Pubmed]
  4. Immunological relationships of an endogenous guinea pig retrovirus with prototype mammalian type B and type D retroviruses. Dahlberg, J.E., Tronick, S.R., Aaronson, S.A. J. Virol. (1980) [Pubmed]
  5. Identification of receptors for pig endogenous retrovirus. Ericsson, T.A., Takeuchi, Y., Templin, C., Quinn, G., Farhadian, S.F., Wood, J.C., Oldmixon, B.A., Suling, K.M., Ishii, J.K., Kitagawa, Y., Miyazawa, T., Salomon, D.R., Weiss, R.A., Patience, C. Proc. Natl. Acad. Sci. U.S.A. (2003) [Pubmed]
  6. Myristylation site in Pr65gag is essential for virus particle formation by Moloney murine leukemia virus. Rein, A., McClure, M.R., Rice, N.R., Luftig, R.B., Schultz, A.M. Proc. Natl. Acad. Sci. U.S.A. (1986) [Pubmed]
  7. Silencing and variegation of gammaretrovirus and lentivirus vectors. Ellis, J. Hum. Gene Ther. (2005) [Pubmed]
  8. An aromatic side chain is required at residue 8 of SU for fusion of ecotropic murine leukemia virus. Qian, Z., Albritton, L.M. J. Virol. (2004) [Pubmed]
  9. Characterization of HIV-1 vectors with gammaretrovirus envelope glycoproteins produced from stable packaging cells. Strang, B.L., Ikeda, Y., Cosset, F.L., Collins, M.K., Takeuchi, Y. Gene Ther. (2004) [Pubmed]
  10. Bovine leukemia virus matrix-associated protein MA(p15): further processing and formation of a specific complex with the dimer of the 5'-terminal genomic RNA fragment. Katoh, I., Kyushiki, H., Sakamoto, Y., Ikawa, Y., Yoshinaka, Y. J. Virol. (1991) [Pubmed]
  11. Suppression of UAA and UGA termination codons in mutant murine leukemia viruses. Feng, Y.X., Levin, J.G., Hatfield, D.L., Schaefer, T.S., Gorelick, R.J., Rein, A. J. Virol. (1989) [Pubmed]
  12. The envelope glycoprotein of human endogenous retrovirus HERV-W induces cellular resistance to spleen necrosis virus. Ponferrada, V.G., Mauck, B.S., Wooley, D.P. Arch. Virol. (2003) [Pubmed]
  13. Identification of a Novel Gammaretrovirus in Prostate Tumors of Patients Homozygous for R462Q RNASEL Variant. Urisman, A., Molinaro, R.J., Fischer, N., Plummer, S.J., Casey, G., Klein, E.A., Malathi, K., Magi-Galluzzi, C., Tubbs, R.R., Ganem, D., Silverman, R.H., Derisi, J.L. PLoS Pathog. (2006) [Pubmed]
  14. Sodium-dependent myo-inositol transporter 1 is a cellular receptor for Mus cervicolor M813 murine leukemia virus. Hein, S., Prassolov, V., Zhang, Y., Ivanov, D., Löhler, J., Ross, S.R., Stocking, C. J. Virol. (2003) [Pubmed]
  15. In vivo modification of retroviral gag gene-encoded polyproteins by myristic acid. Schultz, A.M., Oroszlan, S. J. Virol. (1983) [Pubmed]
  16. Functional domains in the retroviral transmembrane protein. Zhao, Y., Zhu, L., Benedict, C.A., Chen, D., Anderson, W.F., Cannon, P.M. J. Virol. (1998) [Pubmed]
 
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