Epigenetic regulation of Sox4 during palate development

被引:1
|
作者
Seelan, Ratnam S. [1 ]
Mukhopadhyay, Partha [1 ]
Warner, Dennis R. [1 ]
Webb, Cynthia L. [1 ]
Pisano, Michele [1 ]
Greene, Robert M. [1 ]
机构
[1] Univ Louisville, Birth Defects Ctr, Dept Mol Cellular & Craniofacial Biol, ULSD, Louisville, KY 40202 USA
关键词
cleft palate; CpG methylation; epigenetics; medial edge epithelium; orofacial; rugae; secondary palate; Sox4; TRANSCRIPTION FACTORS SOX4; NONSYNDROMIC CLEFT-LIP; SIGNALING PATHWAY; EXPRESSION; GENE; CELLS; MECHANISMS; REVEALS; RUGAE; PALATOGENESIS;
D O I
10.2217/EPI.13.1
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Aim: Identification of genes that contribute to secondary palate development provide a better understanding of the etiology of palatal clefts. Gene-expression profiling of the murine palate from gestational days 12-14 (GD12-14), a critical period in palate development, identified Sox4 as a differentially expressed gene. In this study, we have examined if the differential expression of Sox4 in the palate is due to changes in DNA methylation. Materials & methods: In situ hybridization ana-lysis was used to localize the expression of Sox4 in the developing murine secondary palate. CpG methylation profiling of a 1.8-kb upstream region of Sox4 in the secondary palate from GD12-14 and transfection ana-lysis in murine embryonic maxillary mesenchymal cells using Sox4 deletion, mutant and in vitro methylated plasmid constructs were used to identify critical CpG residues regulating Sox4 expression in the palate. Results: Spatiotemporal ana-lysis revealed that Sox4 is expressed in the medial edge epithelium and presumptive rugae-forming regions of the palate from GD12 to GD13. Following palatal shelf fusion on GD14, Sox4 was expressed exclusively in the epithelia of the palatal rugae, structures that serve as signaling centers for the anteroposterior extension of the palate, and that are thought to serve as neural stem cell niches. Methylation of a 1.8-kb region upstream of Sox4, containing the putative promoter, completely eliminated promoter activity. CpG methylation profiling of the 1.8-kb region identified a CpG-poor region (DMR4) that exhibited significant differential methylation during palate development, consistent with changes in Sox4 mRNA expression. Changes in the methylation of DMR4 were attributed primarily to CpGs 83 and 85. Conclusion: Our studies indicate that Sox4 is an epigenetically regulated gene that likely integrates multiple signaling systems for mediating palatal fusion, palatal extension and/or the maintenance of the neural stem cell niche in the rugae.
引用
收藏
页码:131 / 146
页数:16
相关论文
共 50 条
  • [1] Sequential requirement of Sox4 and Sox11 during development of the sympathetic nervous system
    Potzner, Michaela R.
    Tsarovina, Konstantina
    Binder, Ellen
    Penzo-Mendez, Alfredo
    Lefebvre, Veronique
    Rohrer, Hermann
    Wegner, Michael
    Sock, Elisabeth
    DEVELOPMENT, 2010, 137 (05): : 775 - 784
  • [2] Expression of Sox4 and Sox11 is regulated by multiple mechanisms during retinal development
    Usui, Ayumi
    Iwagawa, Toshiro
    Mochizuki, Yujin
    Iida, Atsumi
    Wegner, Michael
    Murakami, Akira
    Watanabe, Sumiko
    FEBS LETTERS, 2013, 587 (04) : 358 - 363
  • [3] The closely related transcription factors Sox4 and Sox11 function as survival factors during spinal cord development
    Thein, Daniela C.
    Thalhammer, Johannes M.
    Hartwig, Anna C.
    Crenshaw, E. Bryan, III
    Lefebvre, Veronique
    Wegner, Michael
    Sock, Elisabeth
    JOURNAL OF NEUROCHEMISTRY, 2010, 115 (01) : 131 - 141
  • [4] Regulation of a progenitor gene program by SOX4 is essential for mammary tumor proliferation
    Roukens, M. Guy
    Frederiks, Cynthia L.
    Seinstra, Danielle
    Braccioli, Luca
    Khalil, Antoine A.
    Pals, Cornelieke
    De Neck, Simon
    Bornes, Laura
    Beerling, Evelyne
    Mokry, Michal
    de Bruin, Alain
    Westendorp, Bart
    van Rheenen, Jacco
    Coffer, Paul J.
    ONCOGENE, 2021, 40 (45) : 6343 - 6353
  • [5] sox4 And sox11 Function during Xenopus laevis Eye Development
    Cizelsky, Wiebke
    Hempel, Annemarie
    Metzig, Marlen
    Tao, Si
    Hollemann, Thomas
    Kuehl, Michael
    Kuehl, Susanne J.
    PLOS ONE, 2013, 8 (07):
  • [6] Transcriptional regulatory network of SOX4 during myoblast differentiation
    Jang, Sang-Min
    Kim, Chul-Hong
    Kim, Jung-Woong
    Choi, Kyung-Hee
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2015, 462 (04) : 365 - 370
  • [7] Epigenetic repression of microRNA-129-2 leads to overexpression of SOX4 in gastric cancer
    Shen, Ruizhe
    Pan, Shen
    Qi, Shengjian
    Lin, Xiaolin
    Cheng, Shidan
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2010, 394 (04) : 1047 - 1052
  • [8] Syntenin-mediated regulation of Sox4 proteasomal degradation modulates transcriptional output
    Beekman, J. M.
    Vervoort, S. J.
    Dekkers, F.
    van Vessem, M. E.
    Vendelbosch, S.
    Brugulat-Panes, A.
    van Loosdregt, J.
    Braat, A. K.
    Coffer, P. J.
    ONCOGENE, 2012, 31 (21) : 2668 - 2679
  • [9] Epigenetic Repression of microRNA-129-2 Leads to Overexpression of SOX4 Oncogene in Endometrial Cancer
    Huang, Yi-Wen
    Liu, Joseph C.
    Deatherage, Daniel E.
    Luo, Jingqin
    Mutch, David G.
    Goodfellow, Paul J.
    Miller, David S.
    Huang, Tim H-M.
    CANCER RESEARCH, 2009, 69 (23) : 9038 - 9046
  • [10] Gloal transcriptional analysis identifies a novel role for SOX4 in tumor-induced angiogenesis
    Vervoort, Stephin J.
    de Jong, Olivier G.
    Roukens, M. Guy
    Frederiks, Cynthia L.
    Vermeulen, Jeroen F.
    Lourenco, Ana Rita
    Bella, Laura
    Vidakovic, Ana Tufegdzic
    Sandoval, Jose L.
    Moelans, Cathy
    van Amersfoort, Miranda
    Dallman, Margaret J.
    Bruna, Alejandra
    Caldas, Carlos
    Nieuwenhuis, Edward
    van der Wall, Elsken
    Derksen, Patrick
    van Diest, Paul
    Verhaar, Marianne C.
    Lam, Eric W-F
    Mokry, Michal
    Coffer, Paul J.
    ELIFE, 2018, 7