Abstract
Mammalian forms of the transcription repressor, Kaiso, can reportedly bind methylated DNA and non-methylated CTGCNA motifs. Here we compare the DNA-binding properties of Kaiso from frog, fish and chicken and demonstrate that only the methyl-CpG-binding function of Kaiso is evolutionarily conserved. We present several independent experimental lines of evidence that the phenotypic abnormalities associated with xKaiso-depleted Xenopus laevis embryos are independent of the putative CTGCNA-dependent DNA-binding function of xKaiso. Our analysis suggests that xKaiso does not play a role in the regulation of either xWnt11 or Siamois, key signalling molecules in the Wnt pathway during X. laevis gastrulation. The major phenotypic defects associated with xKaiso depletion are premature transcription activation before the mid-blastula transition and concomitant activation of a p53-dependent cell-death pathway.
MeSH Terms
Animals
Animals, Genetically Modified
Apoptosis
Base Sequence
Binding Sites/genetics
Chickens
Conserved Sequence
CpG Islands
DNA/genetics,metabolism
DNA Methylation
Gastrulation/genetics,physiology
Homeodomain Proteins/metabolism
Humans
Phenotype
Recombinant Fusion Proteins/genetics,metabolism
Repressor Proteins/genetics,metabolism
Signal Transduction
Species Specificity
Takifugu
Transcription Factors/genetics,metabolism
Wnt Proteins/metabolism
Xenopus Proteins/deficiency,genetics,metabolism
Xenopus laevis/embryology,genetics,metabolism
Zebrafish/embryology,genetics,metabolism
Zebrafish Proteins/genetics,metabolism
Chemicals
Homeodomain Proteins
Recombinant Fusion Proteins
Repressor Proteins
SIA1 protein, Xenopus
Transcription Factors
Wnt Proteins
Xenopus Proteins
ZBTB33 protein, Xenopus
Zebrafish Proteins
wnt11b protein, Xenopus
zbtb4 protein, zebrafish
DNA
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Ruzov Alexey
Human Genetics Unit, MRC, Western General Hospital, Edinburgh, UK.
Savitskaya Ekaterina
Hackett Jamie A
Reddington James P
Prokhortchouk Anna
Madej Monika J
Chekanov Nikolai
Li Minghui
Dunican Donncha S
Prokhortchouk Egor
Pennings Sari
Meehan Richard R
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