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Ploidy Manipulation of Zebrafish Embryos with Heat Shock 2 Treatment
Published on: December 16, 2016
Shugoshin 2A stabilizes heterochromatin complexes to suppress the 2-cell-like state in embryonic stem cells
Panpan Shi1, Kairang Jin1, Guoxing Yin1
1State Key Laboratory of Medicinal Chemical Biology, Nankai University, Tianjin 300350, China; Frontiers Science Center for Cell Responses, College of Life Sciences, Nankai University, Tianjin 300071, China.
Abstract:
Two-cell (2C)-specific transcripts important for maternal zygotic transition, such as Zscan4 and endogenous retrovirus (MERVL), are sporadically expressed in approximately 1%-5% of an embryonic stem cell (ESC) population to maintain ESC and telomere homeostasis. However, the molecular mechanisms regulating the 2-cell-like state in ESCs are not fully understood. Here, we show that Sgo2a is an important suppressor of the 2-cell-like state and telomere length. Loss of Sgo2a reduces the enrichment of heterochromatic H3K9me3 on 2C genes, including Dux, Zscan4 gene clusters and downstream enhancers, resulting in activation of a 2-cell-like state. However, chromosome breakage was detected in Sgo2a-deficient ESCs. Mechanistically, SGO2A promotes the interaction between RIF1 and KAP1, regulates KAP1 ubiquitination, and maintains KAP1 stability at heterochromatin, repressing 2-cell genes. These results reveal a critical role for Sgo2a in suppressing the 2C-like state to maintain the homeostasis and genome stability of ESCs.
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