scholarly journals Fosl1 overexpression directly activates trophoblast-specific gene expression programs in embryonic stem cells

2018 ◽  
Vol 26 ◽  
pp. 95-102 ◽  
Author(s):  
Bum-Kyu Lee ◽  
Nadima Uprety ◽  
Yu Jin Jang ◽  
Scott K. Tucker ◽  
Catherine Rhee ◽  
...  
1996 ◽  
Vol 229 (1) ◽  
pp. 27-34 ◽  
Author(s):  
Koichiro Abe ◽  
Hitoshi Niwa ◽  
Katsuro Iwase ◽  
Masaki Takiguchi ◽  
Masataka Mori ◽  
...  

2020 ◽  
Vol 295 (51) ◽  
pp. 17738-17751
Author(s):  
Nihal Terzi Cizmecioglu ◽  
Jialiang Huang ◽  
Ezgi G. Keskin ◽  
Xiaofeng Wang ◽  
Idil Esen ◽  
...  

Distinct cell types emerge from embryonic stem cells through a precise and coordinated execution of gene expression programs during lineage commitment. This is established by the action of lineage specific transcription factors along with chromatin complexes. Numerous studies have focused on epigenetic factors that affect embryonic stem cells (ESC) self-renewal and pluripotency. However, the contribution of chromatin to lineage decisions at the exit from pluripotency has not been as extensively studied. Using a pooled epigenetic shRNA screen strategy, we identified chromatin-related factors critical for differentiation toward mesodermal and endodermal lineages. Here we reveal a critical role for the chromatin protein, ARID4B. Arid4b-deficient mESCs are similar to WT mESCs in the expression of pluripotency factors and their self-renewal. However, ARID4B loss results in defects in up-regulation of the meso/endodermal gene expression program. It was previously shown that Arid4b resides in a complex with SIN3A and HDACS 1 and 2. We identified a physical and functional interaction of ARID4B with HDAC1 rather than HDAC2, suggesting functionally distinct Sin3a subcomplexes might regulate cell fate decisions Finally, we observed that ARID4B deficiency leads to increased H3K27me3 and a reduced H3K27Ac level in key developmental gene loci, whereas a subset of genomic regions gain H3K27Ac marks. Our results demonstrate that epigenetic control through ARID4B plays a key role in the execution of lineage-specific gene expression programs at pluripotency exit.


2016 ◽  
Vol 01 (03) ◽  
pp. 201-208 ◽  
Author(s):  
Malini Krishnamoorthy ◽  
Brian Gerwe ◽  
Jamie Heimburg-Molinaro ◽  
Rachel Nash ◽  
Jagan Arumugham ◽  
...  

2019 ◽  
Vol 10 ◽  
Author(s):  
Lili An ◽  
Yanming Li ◽  
Yingjun Fan ◽  
Ning He ◽  
Fanlei Ran ◽  
...  

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