AI Article Synopsis

  • Cohesin is a protein complex essential for processes like chromatin remodeling, chromosome segregation, DNA replication, and gene expression regulation throughout the cell cycle.
  • * The kleisin proteins (RAD21 and REC8) are critical in embryonic stem cells to maintain pluripotency and genomic stability.
  • * Depleting these kleisin subunits leads to downregulation of DNA repair genes, reduced cell viability, and increased DNA hypermethylation, suggesting that cohesin is vital for both chromatin organization and maintaining genomic integrity.

Article Abstract

Cohesin is a ring-shaped protein complex that comprises the SMC1, SMC3, and α-kleisin proteins, STAG1/2/3 subunits, and auxiliary factors. Cohesin participates in chromatin remodeling, chromosome segregation, DNA replication, and gene expression regulation during the cell cycle. Mitosis-specific α-kleisin factor RAD21 and meiosis-specific α-kleisin factor REC8 are expressed in embryonic stem cells (ESCs) to maintain pluripotency. Here, we demonstrated that RAD21 and REC8 were involved in maintaining genomic stability and modulating chromatin modification in murine ESCs. When the kleisin subunits were depleted, DNA repair genes were downregulated, thereby reducing cell viability and causing replication protein A (RPA) accumulation. This finding suggested that the repair of exposed single-stranded DNA was inefficient. Furthermore, the depletion of kleisin subunits induced DNA hypermethylation by upregulating DNA methylation proteins. Thus, we proposed that the cohesin complex plays two distinct roles in chromatin remodeling and genomic integrity to ensure the maintenance of pluripotency in ESCs. [BMB Reports 2023; 56(2): 108-113].

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9978357PMC
http://dx.doi.org/10.5483/BMBRep.2022-0106DOI Listing

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