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Micronuclei containing whole chromosomes harbouring the selectable gene do not lead to mutagenesis
Authors:Eckert, Inge   Caspary, William J.   Nusse, Michael   Liechty, Melissa   Davis, Lisa   Stopper, Helga
Affiliation:1Department of Toxicology, University of Wurzburg 97078 Wurzburg, Germany 2National Institutes of Health. Research Triangle Park NC 27709, USA 3 GSF-Flow Cytometry 85764 Neuherberg, Germany 4Applied Genetics Laboratories Inc. 1335 Gateway Drive, Melbourne, FL 32901, USA
Abstract:
Loss of heterozygosity is one genetic change observed in manytumours. We do not know whether the loss of chromosomal materialthrough micronucleus formation is a viable mechanism associatedwith, and possibly leading to, genetic disease. Previously,we treated L5178Y mouse lymphoma cells with four aneugens. Althoughthese aneugens induced micronuclei containing predominantlywhole chromosomes, they did not induce mutations at Tk1, theselectable gene, under the same non-toxic conditions in whichthey induced micronuclei. This suggested that the inductionof micronuclei containing whole chromosomes was not an earlyevent leading to phenotypically expressed mutations in thesecells under the conditions used. However, it is possible thatchromosome 11, on which Tk1 resides, may be under-representedin the micronucleus population. To find out the frequency ofinduction of micronuclei containing chromosome 11, we appliedfluorescence in situ hybridization using a chromosome 11 paintto micronuclei induced by colcemid and vinblastine. We foundthat the numbers of micronuclei containing chromosome 11 aremore than sufficient to be detectable as mutations if thesemicronuclei lead to viable mutants. We conclude that the formationof micronuclei containing whole chromosomes does not lead toviable, dividing mutants in this system. 5To whom correspondence should be addressed
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