Faculty profile
Krassimir Yankulov
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of Guelph directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Correction: Evaluation of drug-free methods for the detection of gene silencing in S. cerevisiae.
Biochemistry and cell biology = Biochimie et biologie cellulaire · 2025 · senior author
Mutations in the DNA processivity factor POL30 predispose the FLO11 locus to epigenetic instability in S. cerevisiae.
Journal of cell science · 2024 · senior author
Correction: TOF1 and RRM3 reveal a link between gene silencing and the pausing of replication forks.
Current genetics · 2023 · senior author
Latest funding
- $216,000
Epigenetic transmission in S.cerevisiae: links to DNA replication and cell cycle regulation
NSERC · 2020 · Principal investigator
- $225,000
Mechanisms of epigenetic conversions in S.cerevisiae
NSERC · 2015 · Principal investigator
- $135,000
Regulation of gene silencing and positional variegation in S.cerevisae
NSERC · 2010 · Principal investigator
26 publications.
Correction: Evaluation of drug-free methods for the detection of gene silencing in S. cerevisiae.
Shaban K, Sauty S, Fisher A, Cheng A, Yankulov K
Mutations in the DNA processivity factor POL30 predispose the FLO11 locus to epigenetic instability in S. cerevisiae.
Sauty SM, Fisher A, Dolson A, Yankulov K
Correction: TOF1 and RRM3 reveal a link between gene silencing and the pausing of replication forks.
Shaban K, Dolson A, Fisher A, Lessard E, Sauty SM, Yankulov K
TOF1 and RRM3 reveal a link between gene silencing and the pausing of replication forks.
Shaban K, Dolson A, Fisher A, Lessard E, Sauty SM, Yankulov K
Analyses of POL30 (PCNA) reveal positional effects in transient repression or bi-modal active/silent state at the sub-telomeres of S. cerevisiae.
Sauty SM, Yankulov K
Evaluation of drug-free methods for the detection of gene silencing in Saccharomyces cerevisiae.
Shaban K, Sauty SM, Fisher A, Cheng A, Yankulov K
Dbf4-Dependent Kinase: DDK-ated to post-initiation events in DNA replication.
Dolson A, Sauty SM, Shaban K, Yankulov K
Variation, Variegation and Heritable Gene Repression in S. cerevisiae.
Shaban K, Sauty SM, Yankulov K
Gene repression in S. cerevisiae-looking beyond Sir-dependent gene silencing.
Sauty SM, Shaban K, Yankulov K
Dysfunctional CAF-I reveals its role in cell cycle progression and differential regulation of gene silencing.
Rowlands H, Shaban K, Cheng A, Foster B, Yankulov K
Epigenetic transmission in S.cerevisiae: links to DNA replication and cell cycle regulation
Principal investigators: Yankulov, Krassimir
Keywords: epigenetics; gene silencing; dna replication; dna replication pausing; telomere position effect; flocculation and flo genes; mating type loci; chromatin assembly factor i; dbf4-dependent kinase (ddk); cyclin dependent kinase (cdk)
Mechanisms of epigenetic conversions in S.cerevisiae
Principal investigators: Yankulov, Krassimir
Regulation of gene silencing and positional variegation in S.cerevisae
Principal investigators: Yankulov, Krassimir
Freezer and shaker for studies in S.cerevisiae
Principal investigators: Yankulov, Krassimir
A mid-speed centifuge for molecular and cellular biology
Principal investigators: Yankulov, Krassimir
Analysis of the role of the MCM proteins in gene repression and chromatin structure
Principal investigators: Yankulov, Krassimir
Regulation of transcription by pol II in mcm and rpb1 mutants in S.cerevisiae
Principal investigators: Yankulov, Krassimir
A scintillation counter for molecular biology studies
Principal investigators: Yankulov, Krassimir
Regulation of transcriptional elongation by RNA polymerase II
Principal investigators: Yankulov, Krassimir
Equipment for research on RNA polymerase II elongation
Principal investigators: Yankulov, Krassimir
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
A short, specific email works best. This draft uses one of their recent papers; replace the parts in brackets with your own details before sending.