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The ERK5 MAP kinase signalling pathway was recently discovered as a driver of naïve pluripotency in mouse Embryonic Stem Cells (mESCs). However, the molecular functions of ERK5 in mESCs have not been investigated. Here, we employ combinatorial mESC proteomics to identify ERK5 target genes and substr...
ORGANISM(S): Mus musculus (Mouse) 
2021-11-29 | PXD010581 | Pride
The signalling axis ERK5/KLF2 is a major determinant of chemical sarcomagenesis
In skeletal muscle differentiation, muscle-specific genes are regulated by two groups of transcription factors, the MyoD and MEF2 families, which work together to drive the differentiation process. Here we show that ERK5 regulates muscle cell fusion through Klf transcription factors. The inhibition ...
ORGANISM(S): Mus musculus 
Sarcomas are a heterogeneous group of tumors in which the role of ERK5 is poorly studied. To clarify the role of this particular MAPK in sarcomatous pathology, we used a murine 3-methyl-cholanthrene (3MC)-induced sarcoma model. Our data show that 3MC induces pleomorphic sarcomas with muscle differen...
ORGANISM(S): Mus musculus 
2022-08-03 | GSE199395 | GEO
CCE mESCs were transfected with either empty pCAGGS vector or HA-MEK5DD (S311D T315D) construct for 48 hours. 24 hours prior to lysis, mESCs were either treated with 10uM AX15836 or DMSO control, and transfected mESCs selected with puromycin. Conditions were performed in triplicate.
ORGANISM(S): Mus musculus (Mouse) 
2021-03-18 | PXD024679 | Pride
In skeletal muscle differentiation, muscle-specific genes are regulated by two groups of transcription factors, the MyoD and MEF2 families, which work together to drive the differentiation process. Here we show that ERK5 regulates muscle cell fusion through Klf transcription factors. The inhibition ...
ORGANISM(S): Mus musculus 
2011-02-21 | GSE25827 | GEO
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