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Bleomycin, unlike other male-mouse mutagens, is most effective in spermatogonia, inducing primarily deletions
L B Russell1, P R Hunsicker, M K Kerley
1Life Sciences Division, Oak Ridge National Laboratory, Building 9210, P.O. Box 2009, MS 8077, 37831-8077, Oak Ridge, TN, USA. russelllb@orn1.gov
Abstract:
Dominant-lethal tests [P.D. Sudman, J.C. Rutledge, J.B. Bishop, W.M. Generoso, Bleomycin: female-specific dominant lethal effects in mice, Mutat. Res. 296 (1992) 205-217] had suggested that Bleomycin sulfate (Blenoxane), BLM, might be a female-specific mutagen. While confirming that BLM is indeed a powerful inducer of dominant-lethal mutations in females that fails to induce such mutations in postspermatogonial stages of males, we have shown in a specific-locus test that BLM is, in fact, mutagenic in males. This mutagenicity, however, is restricted to spermatogonia (stem-cell and differentiating stages), for which the specific-locus mutation rate differed significantly (P<0.008) from the historical control rate. In treated groups, dominant mutations, also, originated only in spermatogonia. With regard to mutation frequencies, this germ-cell-stage pattern is different from that for radiation and for any other chemical studied to date, except ethylnitrosourea (ENU). However, the nature of the spermatogonial specific-locus mutations differentiates BLM from ENU as well, because BLM induced primarily (or, perhaps, exclusively) multilocus deletions. Heretofore, no chemical that induced specific-locus mutations in spermatogonia did not also induce specific-locus as well as dominant-lethal mutations in postspermatogonial stages, making the dominant lethal test, up till now, predictive of male mutagenicity in general. The BLM results now demonstrate that there are chemicals that can induce specific-locus mutations in spermatogonia without testing positive in postspermatogonial stages. Thus, BLM, while not female-specific, is unique, (a) in its germ-cell-stage specificity in males, and (b) in inducing a type of mutation (deletions) that is atypical for the responding germ-cell stages (spermatogonia).
Insights
Bleomycin (BLM) is not female-specific but is mutagenic in male spermatogonia, causing deletions. This unique germ-cell-stage specificity challenges previous assumptions about mutagenicity testing in males.
Area of Science:
- Toxicology
- Genetics
- Molecular Biology
Background:
- Dominant-lethal tests suggested Bleomycin sulfate (BLM) was a female-specific mutagen.
- Previous studies indicated BLM induced dominant-lethal mutations in females but not in postspermatogonial male germ cells.
Purpose of the Study:
- To investigate the mutagenicity of Bleomycin (BLM) in male germ cells using specific-locus tests.
- To determine the germ-cell stage specificity and mutation types induced by BLM in males.
Main Methods:
- Specific-locus tests were conducted on male mice exposed to BLM.
- Dominant-lethal tests were also performed for comparison.
- Mutation frequencies and types were analyzed in different germ cell stages.
Main Results:
- BLM was confirmed as a powerful inducer of dominant-lethal mutations in females.
- BLM induced specific-locus mutations in male spermatogonia (stem-cell and differentiating stages), but not in postspermatogonial stages.
- Mutations induced by BLM in spermatogonia were primarily multilocus deletions, differing from other mutagens like ethylnitrosourea (ENU).
Conclusions:
- BLM is not female-specific; it exhibits unique germ-cell-stage specificity in males.
- BLM induces deletions in spermatogonia, a mutation type atypical for these germ cell stages.
- The findings demonstrate that dominant-lethal tests may not fully predict male mutagenicity for all chemicals.