RRC ID 45603
Author Kim KD, Tanizawa H, Iwasaki O, Noma K.
Title Transcription factors mediate condensin recruitment and global chromosomal organization in fission yeast.
Journal Nat Genet
Abstract It is becoming clear that structural-maintenance-of-chromosomes (SMC) complexes such as condensin and cohesin are involved in three-dimensional genome organization, yet their exact roles in functional organization remain unclear. We used chromatin interaction analysis by paired-end tag sequencing (ChIA-PET) to comprehensively identify genome-wide associations mediated by condensin and cohesin in fission yeast. We found that although cohesin and condensin often bind to the same loci, they direct different association networks and generate small and larger chromatin domains, respectively. Cohesin mediates associations between loci positioned within 100 kb of each other; condensin can drive longer-range associations. Moreover, condensin, but not cohesin, connects cell cycle-regulated genes bound by mitotic transcription factors. This study describes the different functions of condensin and cohesin in genome organization and how specific transcription factors function in condensin loading, cell cycle-dependent genome organization and mitotic chromosome organization to support faithful chromosome segregation.
Volume 48(10)
Pages 1242-52
Published 2016-10-1
DOI 10.1038/ng.3647
PII ng.3647
PMID 27548313
PMC PMC5042855
MeSH Adenosine Triphosphatases / metabolism* Binding Sites Cell Cycle Proteins / metabolism Chromatin / metabolism Chromosomal Proteins, Non-Histone / metabolism Chromosomes, Fungal* DNA-Binding Proteins / metabolism* GATA Transcription Factors / metabolism* Genes, Fungal Genes, cdc Mitosis Multiprotein Complexes / metabolism* Nuclear Proteins / metabolism Phosphoproteins / metabolism Protein Domains Schizosaccharomyces / genetics* Schizosaccharomyces / metabolism Schizosaccharomyces pombe Proteins / metabolism* Transcription Factors / metabolism*
IF 27.605
Times Cited 31
WOS Category GENETICS & HEREDITY
Resource
Yeast S. pombe strains