Journal Article1977-10-01No SnippetsMeruelo D, Leiberman M, Ginzton N, Deak B, McDevitt HO.
Show Full Abstract
Resistance to radiation leukemia virus-induced leukemogenesis is associated with the H-2D region of the H-2 complex, or with closely linked loci. The H-2Dd allele confers resistance ot the disease, while the H-2D-Q and H-2Ds alleles are associated with susceptibility. It is not clear whether Ir genes, or an alternative mechanism are responsible for the observed H-2-linked resistance to the disease.
Journal Article1977-10-01No SnippetsMeruelo D, Lieberman M, Deak B, McDevitt HO.
Show Full Abstract
A single locus, tentatively denoted Srlv-1 (susceptibility to radiation leukemia virus [RadLV]-1), confers dominant susceptibility to RadLV-induced leukemogenesis. Srlv-1 is not linked to H-2, and appears to be distinct from Fv-1 and Fv-2. Preliminary data suggest that Srlv-1 affected virus proliferation. A striking feature of this system is that Srlv-1 overrides the protection afforded by the H2D-associated dominant resistance to RadLV-induced neoplasia.
Also flagged:murine leukemiaimmune responselocalizationleukemia-
Journal Article1977-10-01No SnippetsLonai P, Haran-Ghera N.
Show Full Abstract
A resistance locus to leukemogenesis in mice by A-RadLV (a variant of the radiation leukemia virus) is described. This locus, Rrv-1, was mapped to subregions I-A, I-B, and I-J of the H-2 complex. It is suggested that Rrv-1 may be in complementation with a second locus to the right of it, between Rrv-1 and H-2D. This localization and the complementation of the two loci for resistance are characteristics similar to Ir genes, and indicate a possible relationship between the genetic regulation of immune responsiveness and susceptibility to leukemia.