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AMNE:(NATURVETENSKAP Biologi Utvecklingsbiologi)
 

Sökning: AMNE:(NATURVETENSKAP Biologi Utvecklingsbiologi) > (2010-2014) > Mating type switchi...

Mating type switching and transcriptional silencing in Kluyveromyces lactis

Barsoum, Emad, 1979- (författare)
Stockholms universitet,Wenner-Grens institut
Stefan, Åström, Docent (preses)
Stockholms universitet,Wenner-Grens institut
Rusche, Laura, Professor (opponent)
Duke University, Department of Chemistry
 (creator_code:org_t)
ISBN 9789174471052
Stockholm : The Wenner-Gren Institute, Stockholm University, 2010
Engelska 61 s.
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)
Abstract Ämnesord
Stäng  
  • To explore the similarities and differences of regulatory circuits among budding yeasts, we characterized the role of unscheduled meiotic gene expression 6 (UME6) and a novel mating type switching pathway in Kluyveromyces lactis. We found that Ume6 was required for transcriptional silencing of the cryptic mating-type loci HMLα and HMRa. Ume6 acted directly at these loci by binding to the cis-regulatory silencers. Ume6 also served as a block to polyploidy and was required for repression of three meiotic genes, independently of the Rpd3 and Sin3 corepressors. Mating type switching from MATα to MATa required the α3 protein. The α3 protein was similar to transposases of the mutator like elements (MULEs). Mutational analysis showed that the DDE-motif in α3, which is conserved in MULEs was necessary for switching. During switching α3 mobilizes from the genome in the form of a DNA circle. The sequences encompassing the α3 gene circle junctions in the MATα locus were essential for switching from MATα to MATa. Switching also required a DNA binding protein, Mating type switch 1 (Mts1), whose binding sites in MATα were important. Expression of Mts1 was repressed in MATa/MATα diploids and by nutrients, limiting switching to haploids in low nutrient conditions. In a genetic selection for strains with increased switching rates we found a mutation in the RAS1 gene. By measuring the levels of the MTS1 mRNA and switching rates in ras1, pde2 and msn2 mutant strains we show that mating type switching in K. lactis was regulated by the RAS/cAMP pathway and the transcription factor Msn2. ras1 mutants contained 20-fold higher levels of MTS1 mRNA compared to wild type whereas pde2 and msn2 expressed less MTS1 mRNA and had decreased switching rates. Furthermore we found that MTS1 contained several potential Msn2 binding sites upstream of its ORF. We suggest that these observations explain the nutrient regulation of switching.

Ämnesord

NATURVETENSKAP  -- Biologi -- Utvecklingsbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Developmental Biology (hsv//eng)

Nyckelord

Mating type switch
transcriptional silencing
alpha3
transposase
Ume6
Mts1
Ras
cAMP
K. lactis
Developmental biology
Utvecklingsbiologi
utvecklingsbiologi
Developmental Biology

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