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Published online 26 January 2004. doi:10.1083/jcb1643iti4
The Rockefeller University Press, 0021-9525 $8.00
JCB, Volume 164, Number 3, 333-333
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In This Issue

Switching mating types with one arm tied



HML is less constrained in MATa cells (top) than in MAT{alpha} cells (bottom).

The mating type (MAT) locus on Saccharomyces cerevisiae chromosome III can recombine with the HMRa locus near the right telomere or the HML{alpha} locus near the left telomere of the same chromosome. On page 361, Bressan et al. show that the current mating type of a cell determines the spatial configuration of these three loci in the nucleus, suggesting that the outcome of mating type switching is directed by the restraint or release of the left arm of chromosome III.

GFP tagging of chromosomes in the nuclei of living cells showed that movement of the left arm of chromosome III is tightly constrained in MAT{alpha} cells, but relatively free in MATa cells. Deleting the recombination enhancer (RE) sequence on chromosome III keeps the left arm constrained in both types of cells.

RE activity requires the transcriptional activator Fkh1p, and Bressan et al. suggest that Fkh1p competes for DNA binding with tethering factors that restrain the chromosome. In MATa cells, Fkh1p binding prevails, releasing the left arm and allowing HML{alpha} to recombine with the MAT locus, whereas in MAT{alpha} cells, restraint of the left arm leaves HMRa as the recombination donor. By directing cells to switch periodically to the opposite mating type, the system assures the availability of mating partners in a haploid population. {blacksquare}



Alan W. Dove

alanwdove{at}earthlink.net


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Related Article

Mating type–dependent constraints on the mobility of the left arm of yeast chromosome III
Debra A. Bressan, Julio Vazquez, and James E. Haber
J. Cell Biol. 2004 164: 361-371. [Abstract] [Full Text] [PDF]




This Article
Right arrow Full Text (PDF, 421K)
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