Yıl: 2021 Cilt: 45 Sayı: 2 Sayfa Aralığı: 162 - 170 Metin Dili: İngilizce DOI: 10.3906/biy-2010-67 İndeks Tarihi: 29-07-2022

Arid4b physically interacts with Tfap2c in mouse embryonic stem cells

Öz:
Precise regulation of gene expression is required for embryonic stem cell (ESC) differentiation. Transcription factor (TF)networks coordinate the balance of pluripotency and differentiation in response to extracellular and intracellular signals. Chromatinfactors work alongside TFs to achieve timely regulation of gene expression for differentiation process. Our previous studies showed thata member of the Sin3a corepressor complex, Arid4b, is critical for proper mouse ESC differentiation into mesoderm and endoderm. Wefound elevated histone 3 lysine 27 acetylation (H3K27Ac) in a subset of genomic loci in meso/endoderm directed arid4bΔ cells, coincidentwith their derepression. We reasoned that Sin3a complex may be required for the suppression of these genes during differentiation. Toidentify TFs that might cooperate with Arid4b for this function, we found consensus TF binding sequences enriched in H3K27Acelevated regions in arid4bΔ cells. Of these candidate TFs, we validated expression of Bach1, Ddit3, Prrx2, Znf354c and Tfap2c in mESCs.We then demonstrated a physical interaction between Arid4b and Tfap2c in mESCs using endogenous coimmunoprecipitation andproximity ligation assay experiments. Our results point to a role of Arid4b in the Sin3a complex in repression of a subset of Tfap2cregulated genes during meso/endoderm differentiation.
Anahtar Kelime: transcription factor Chromatin embryonic stem cell epigenetics lineage commitment

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Cai W, Huanga J, Zhu Q, Lia BE, Seruggiaa Det al. (2020). Enhancer dependence of cell-type–specific gene expression increases with developmental age. Proceedings of the National Academy of Sciences of the United States of America 117 (35): 21450- 21458. doi: 10.1073/pnas.2008672117
  • Carleton JB, Berrett KC, Gertz J (2017). Multiplex enhancer ınterference reveals collaborative control of gene regulation by estrogen receptor α-bound enhancers. Cell Systems 5 (4): 333- 344. doi: 10.1016/j.cels.2017.08.011
  • Hnisz D, Abraham BJ, LeeTI, Lau A, Saint-AndreV et al. (2013). Super-enhancers in the control of cell identity and disease. Cell 155 (4): 934-947.
  • Fleischer TC, Yun UJ, Ayer DE (2003). Identification and characterization of three new components of the mSin3A corepressor complex. Molecular and Cellular Biology (10): 3456-3467. doi: 10.1128/mcb.23.10.3456-3467.2003
  • Gaspar-Maia A, Alajem A, Meshorer E, Ramalho-Santos M (2003). Open chromatin in pluripotency and reprogramming. Nature Reviews Molecular Cell Biology (1): 36-47. doi: 10.1038/ nrm3036
  • Güven G, Terzi Çizmecioğlu N (2021). Arid4b alters cell cycle and cell 1 death dynamics during mouse embryonic stem cell differentiation. Turkish Journal of Biology 45: 56-64. doi: 10.3906/biy-2009-6
  • Heinz S, Benner C, Spann N, Bertolino E, LinYC et al. (2010). Simple combinations of lineage-determining transcription factors prime cis-regulatory elements required for macrophage and B cell identities. Molecular Cell 38: 576-589. doi: 10.1016/j. molcel.2010.05.004
  • Hnisz D, Schuijers J, Bradner JE, Young RAet al. (2015). Convergence of developmental and oncogenic signaling pathways at transcriptional super-enhancers.Molecular Cell 58: 362-370. doi: 10.1016/j.molcel.2015.02.014
  • Kelly RDW, Cowley SM (2013). The physiological roles of histone deacetylase (HDAC) 1 and 2: complex co-stars with multiple leading parts.Biochemical Society Transactions 41 (3): 741- 749. doi: 10.1042/BST20130010
  • Liang J, Wan M, Zhang Y, Gu P, Xin Het al. (2008). Nanog and Oct4 associate with unique transcriptional repression complexes in embryonic stem cells. Nature Cell Biology10 (6): 731-739. doi:10.1038/ncb1736
  • Magnúsdóttir E, Dietmann S, Murakami K, Günesdogan U, Tang Fet al. (2013). A tripartite transcription factor network regulates primordial germ cell specification in mice. Nature Cell Biology 15 (8): 905-915. doi:10.1038/ncb2798
  • Mulas C, Kalkan T, Meyenn FV, Leitch HG, Nichols Jet al. (2019). Correction: Definedconditions for propagation and manipulation of mouse embryonic stem cells (doi : 10.1242 / dev.173146) Defined conditions for propagation and manipulation of mouse embryonic stem cells. Development 146. doi: 10.1242/dev.178970
  • Orkin SH, Hochedlinger K (2011). Chromatin connections to pluripotency and cellular reprogramming. Cell 145 (6): 835- 850. doi: 10.1016/j.cell.2011.05.019
  • Pastor WA, Liu W, Chen D, Ho J, Kim Ret al. (2018). TFAP2C regulates transcription in human naive pluripotency by opening enhancers. Nature Cell Biology 20: 553-564. doi: 10.1038/s41556-018-0089-0
  • Takaoka K, Hamada H (2012). Cell fate decisions and axis determination in the early mouse embryo. Development 139 (1): 3-14. doi: 10.1242/dev.060095
  • Terzi Cizmecioglu N, Huang J, Keskin EG, Wang X, EsenI et al. (2020). Arid4b is critical for mouse embryonic stem cell differentiation towards mesoderm and endoderm,linking epigenetics to pluripotency exit. Journal of Biological Chemistry. American Society for Biochemistry & Molecular Biology 295 (51): 17738-17751. doi: 10.1074/jbc.ra120.015534
  • Whyte WA, Orlando DA, Hnisz D, Abraham BJ, LinCY et al. (2013). Master transcription factors and mediator establish superenhancers at key cell identity genes. Cell 153: 307-319. doi: 10.1016/j.cell.2013.03.035
  • Ying QL, Wray J, Nichols J, Batlle-Morera L, Doble B et al. (2008). The ground state of embryonic stem cell self-renewal. Nature 453: 519-523. doi: 10.1038/nature06968
APA Keskin E, TERZI ÇIZMECIOGLU N, Huang J (2021). Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. , 162 - 170. 10.3906/biy-2010-67
Chicago Keskin Ezgi Gül,TERZI ÇIZMECIOGLU NIHAL,Huang Jialiang Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. (2021): 162 - 170. 10.3906/biy-2010-67
MLA Keskin Ezgi Gül,TERZI ÇIZMECIOGLU NIHAL,Huang Jialiang Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. , 2021, ss.162 - 170. 10.3906/biy-2010-67
AMA Keskin E,TERZI ÇIZMECIOGLU N,Huang J Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. . 2021; 162 - 170. 10.3906/biy-2010-67
Vancouver Keskin E,TERZI ÇIZMECIOGLU N,Huang J Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. . 2021; 162 - 170. 10.3906/biy-2010-67
IEEE Keskin E,TERZI ÇIZMECIOGLU N,Huang J "Arid4b physically interacts with Tfap2c in mouse embryonic stem cells." , ss.162 - 170, 2021. 10.3906/biy-2010-67
ISNAD Keskin, Ezgi Gül vd. "Arid4b physically interacts with Tfap2c in mouse embryonic stem cells". (2021), 162-170. https://doi.org/10.3906/biy-2010-67
APA Keskin E, TERZI ÇIZMECIOGLU N, Huang J (2021). Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. Turkish Journal of Biology, 45(2), 162 - 170. 10.3906/biy-2010-67
Chicago Keskin Ezgi Gül,TERZI ÇIZMECIOGLU NIHAL,Huang Jialiang Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. Turkish Journal of Biology 45, no.2 (2021): 162 - 170. 10.3906/biy-2010-67
MLA Keskin Ezgi Gül,TERZI ÇIZMECIOGLU NIHAL,Huang Jialiang Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. Turkish Journal of Biology, vol.45, no.2, 2021, ss.162 - 170. 10.3906/biy-2010-67
AMA Keskin E,TERZI ÇIZMECIOGLU N,Huang J Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. Turkish Journal of Biology. 2021; 45(2): 162 - 170. 10.3906/biy-2010-67
Vancouver Keskin E,TERZI ÇIZMECIOGLU N,Huang J Arid4b physically interacts with Tfap2c in mouse embryonic stem cells. Turkish Journal of Biology. 2021; 45(2): 162 - 170. 10.3906/biy-2010-67
IEEE Keskin E,TERZI ÇIZMECIOGLU N,Huang J "Arid4b physically interacts with Tfap2c in mouse embryonic stem cells." Turkish Journal of Biology, 45, ss.162 - 170, 2021. 10.3906/biy-2010-67
ISNAD Keskin, Ezgi Gül vd. "Arid4b physically interacts with Tfap2c in mouse embryonic stem cells". Turkish Journal of Biology 45/2 (2021), 162-170. https://doi.org/10.3906/biy-2010-67