4.1 Article

Arid4b alters cell cycle and cell death dynamics during mouse embryonic stem cell differentiation

Journal

TURKISH JOURNAL OF BIOLOGY
Volume 45, Issue 1, Pages 56-64

Publisher

Tubitak Scientific & Technological Research Council Turkey
DOI: 10.3906/biy-2009-6

Keywords

Embryonic stem cells; chromatin; cell cycle; cell death; endoderm differentiation

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Funding

  1. Scientific and Technological Research Council of Turkey (TUBITAK) scholarship [117C006]
  2. Middle East Technical University (METU) Scientific Research Projects Coordination Unit projects [BAP-08-11-2016062, YOP-108-2018-2829]

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Cell division and death are crucial in embryonic development, with Arid4b playing a role in regulating cell cycle alterations during differentiation. Arid4b-deficient differentiating cells exhibit reduced proliferative capacity and a cell cycle profile resembling that of embryonic stem cells rather than differentiating cells.
Cell division and death play an important role in embryonic development. Cell specialization is accompanied with slow proliferation and quiescence. Cell death is important for morphogenesis. Gene expression changes during differentiation is coordinated by lineage-specific transcription factors and chromatin factors. It is not yet fully understood how alterations in gene expression and cell cycle/death mechanisms are connected. We previously identified a chromatin protein Arid4b as a critical factor for meso/ endoderm differentiation of mouse embryonic stem cells (mESCs). The differentiation defect of Arid4b-deficient mESCs might be due to misregulation of cell proliferation or death. Here, we identified a role for Arid4b in cell cycle rewiring at the onset of differentiation. Arid4b-deficient differentiating cells have less proliferative capacity and their cell cycle profile is more similar to mESC stage than the differentiating wild-type cells. We found no evidence of increased DNA damage or checkpoint activation. Our investigation of cell death mechanisms found no contribution from autophagy but revealed a slight increase in Caspase-3 activation implying early apoptosis in Arid4b-deficient differentiating cells. Taken together, our data suggest Arid4b regulates cell cycle alterations during exit from pluripotency. Future studies will be instrumental in understanding whether these changes directly contribute to Arid4b-dependent differentiation control.

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