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Transcription factor Mts1/Mts2 (Atf1/Pcr1, Gad7/Pcr1) activates the M 26 meiotic recombination hotspot in Schizosaccharomyces pombe
Homologous recombination hotspots increase the frequency of recombination in nearby DNA. The M26 hotspot in the ade6 gene of Schizosaccharomyces pombe is a meiotic hotspot with a discrete, cis-acting nucleotide sequence (5′-ATGACGT-3′) defined by extensive mutagenesis. A heterodimeric M26 DNA bindin...
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Published in: | Proceedings of the National Academy of Sciences - PNAS 1997-12, Vol.94 (25), p.13765-13770 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Homologous recombination hotspots increase the frequency of recombination in nearby DNA. The
M26
hotspot in the
ade6
gene of
Schizosaccharomyces pombe
is a meiotic hotspot with a discrete, cis-acting nucleotide sequence (5′-ATGACGT-3′) defined by extensive mutagenesis. A heterodimeric
M26
DNA binding protein, composed of subunits Mts1 and Mts2, has been identified and purified 40,000-fold. Cloning, disruption, and genetic analyses of the
mts
genes demonstrate that the Mts1/Mts2 heterodimer is essential for hotspot activity. This provides direct evidence that a specific trans-acting factor, binding to a cis-acting site with a unique nucleotide sequence, is required to activate this meiotic hotspot. Intriguingly, the Mts1/Mts2 protein subunits are identical to the recently described transcription factors Atf1 (Gad7) and Pcr1, which are required for a variety of stress responses. However, we report differential dependence on the Mts proteins for hotspot activation and stress response, suggesting that these proteins are multifunctional and have distinct activities. Furthermore,
ade6
mRNA levels are equivalent in hotspot and nonhotspot meioses and do not change in
mts
mutants, indicating that hotspot activation is not a consequence of elevated transcription levels. These findings suggest an intimate but separable link between the regulation of transcription and meiotic recombination. Other studies have recently shown that the Mts1/Mts2 protein and
M26
sites are involved in meiotic recombination elsewhere in the
S. pombe
genome, suggesting that these factors help regulate the timing and distribution of homologous recombination. |
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ISSN: | 0027-8424 1091-6490 |
DOI: | 10.1073/pnas.94.25.13765 |