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Original Article

Sequence Analysis of Human Endogenous Retrovirus Clone 4-1 in Systemic Lupus Erythematosus

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Pages 15-21 | Received 11 Jan 2000, Accepted 22 May 2000, Published online: 07 Jul 2009

References

  • Leib-Mosch C, Brack-Werner R, Werner T, Bachmann M, Faff O, Erfle V., et al. Endogenous retroviral elements in human DNA. Cancer Res 1993; 50: 5636s–5642s
  • Repaske R, Steele P E, Oneill R. R., Rabson A B, Martin M A. Nucleotide sequence of a full-length human endogenous retroviral segment. J. Virol 1985; 54: 764–772
  • Löwer R, Löwer J, Kurth R. The virus in all of us: characteristic and biological significance of human endogenous retrovirus sequences. Proc. Natl. Acad. Sci. USA 1996; 93: 5177–5184
  • Hishikawa T, Ogasawara H, Kaneko H, Shirasawa T, Matsu-Ura Y., Sekigawa I., et al. Detection of antibodies to recombinant gag protein derived from human endogenous retrovirus like sequence, clone 4-1, in autoimmune diseases. Viral Immunol 1997; 10: 137–147
  • Taruscio D, Manuelidis L. Integration site preferences of endogenous retroviruses. Chwmosoma 1991; 101: 141–156
  • Taruscio D, Mantovani A. Eleven chromosomal integration sites of a human endogenous retrovirus (HERV 4-1) map close to known loci of thirteen hereditary malformation syndromes. Teratology 1996; 54: 108–110
  • Herrmann M, Hagenhofer M, Kalden J R. Retroviruses and systemic lupus erythematosus. Immunol. Rev. 1996; 152: 145–156
  • Nakagawa K, Harrison L C. The potential roles of endogenous retroviruses in autoimmunity. Immunol. Rev. 1996; 152: 193–236
  • Banki K, Maceda J, Hurley E, Ablonczy E, Mattson D H, Szegedy L., et al. Human T-cell lymphotropic virus (HTLV)-related endogenous sequence, HRES-1, encodes a 28-kDa protein: a possible autoantigen for HTLV-1 gag-reactive autoantibodies. Proc. Natl. Acad. Sci. USA 1992; 89: 1939–1943
  • Brookes S M, Pandolfino Y A, Mitchell T J, Venables P J, Shat-Tles W. G., Clark D. A., et al. The immune response to and expression of cross-reactive retroviral gag sequences in autoimmune disease. Br. J. Rheumatol 1992; 31: 735–742
  • Blomberg J, Nived O, Pipkorn R, Bengtsson A, Erlinge D, Sturfelt G. Increased antiretroviral antibody reactivity in sera from a defined population of patients with systemic lupus erythematosus: correlation with autoantibodies and clinical manifestations. Arthritis Rheum 1994; 37: 57–66
  • Herrmann M, Kalden J R. PCR and reverse dot hybridization for the detection of endogenous retroviral transcripts. J. Virol. Methods 1994; 46: 333–348
  • Tan E M, Cohen A S, Fries J F, Masi A T, McShane D J, Roth-Field N. F., et al. The 1982 revised criteria for the classification of systemic lupus erythematosus. Arthritis Rheum 1982; 25: 1271–1277
  • Chomezynski P, Sacchi N. Single-step method of RNA isolation by acid guanidium thiocyanate-phenolchloroform extraction. Anal. Biochem 1987; 162: 156–159
  • MedstrandLindeskog P. M, Blomberg J. Expression of human endogenous retrovirus sequences in peripheral blood mononuclear cells of healthy individuals. J. Gen. Virol 1992; 73: 2463–2466
  • Roivainen A, Jalava J, Pirila L, Yli-Jama T, Tiusanen H, Toivanen P. H-ras oncogene point mutations in arthritis. Synovium. Arthritis Rheum 1997; 9: 1636–1643
  • Yoshiki T, Mellors R C, Strand M, August J T. The viral envelope glycoprotein of murine leukemia virus and the pathogenesis of immune complex glomerulonephritis of New Zealand mice. /. Exp. Med. 1974; 140: 1011–1027
  • Izui S, McConahey P J, Theofilopoulos A N, Dixon F J. Association of circulating retroviral gp70-anti-gp70 immune complexes with murine systemic lupus erythematosus. J. Exp. Med. 1979; 149: 1099–1116
  • Shirai T, Ohta K, Kohno A, Furukawa F, Yoshida H, Maru-Yama N., et al. Naturally occurring antibody response to DNA is associated with the response to retroviral gp70 in autoim-muune new Zealand mice. Arthritis Rheum 1986; 29: 242–250
  • Mellors R C, Mellors J W. Antigen related to mammalian type-C RNA viral p30 proteins is located in renal glomeruli in human systemic lupus erythematosus. Proc. Natl. Acad. Sci. USA 1976; 73: 233–237
  • Reynolds J T, Panem S. Characterization of antibody to C-type virus antigens isolated from immune complexes in kidneys of patients with systemic lupus erythematosus. Lab. Invest 1981; 44: 410–419
  • Rucheton M, Graafland H, Fanton H, Ursule L, Ferrier P, Larsen C J. Presence of circulating antibodies against gag-gene MuLV proteins in patients with autoimmune connective tissue disorders. Virology 1985; 144: 468–480
  • Query C C, Keene J D. A human autoimmune protein associated with UI RNA contains a region of homology that is cross-reactive with retroviral p30 gag antigen. Cell 1987; 51: 211–220
  • Talal N, Garry R F, Schur P., Alexander H. S, Dauphinee M J, Livas I. H., et al. A conserved idiotype and antibodies to retroviral proteins in systemic lupus erythematosus. J. Clin. Invest 1990; 85: 1866–1871
  • Koshino K, Tokano Y, Hishikawa T, Sekigawa I, Takasaki Y, Hashimoto H. Detection of antibodies to HIV-1 gp4l and HLA class II antigen-derived peptides in SLE patients. Scand. J. Rheumatol 1995; 24: 288–292
  • Dirksen E. R., Levy J A. Virus-like particles in placentas from normal individuals and patients with systemic lupus erythematosus. J. Natl. Cancer Inst 1977; 59: 1187–1192
  • Tamura N, Sekigawa I, Hashimoto H, Yamamoto N, Kira S. Syncytial cell formation in vivo by type C retroviral particles in the systemic lupus erythematosus (SLE) lung. Clin. Exp. Immunol 1997; 107: 474–479
  • Kaye B R. Rheumatic manifestations of human immunodeficiency virus (HIV). Ann. Intern. Med. 1989; 111: 158–167
  • Sekigawa Kaneko I. H, Hishikawa T, Hashimoto H, Hirose S, Kaneko Y., et al. HIV infection and SLE: their pathogenic relationship. Clin. Exp. Rheumatol 1998; 16: 175–180
  • Haraguchi S, Good R A, Cianciolo G J, Engelman R W, Day N K. Immunosuppressive retroviral peptides: immunopatho-logical implications for immunosuppressive influences of retroviral infections. J. Leukoc. Biol 1997; 61: 654–666
  • Biéche I, Laurendeau I, Tozlu S, Olivi M, Vidaud D., Lidereau R., et al. Quantitation of MYC gene expression in sporadic breast tumor with a real-time reverse tran-scriptase-PCR assay. Cancer Res 1999; 59: 2759–2765
  • Groudinc Eisenman M. R., Weintraub H. Chromatin structure of endogenous retroviral genes and activation by an inhibitor of DNA methylation. Nature 1981; 292: 311–317
  • Urnovilz H B, Murphy W H. Human endogenous retroviruses: nature, occurrence, and clinical implications in human disease. Clin. Microbiol. Rev. 1996; 9: 72–99

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