• Title/Summary/Keyword: TFAP2C

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TFAP2C Promotes Cell Proliferation by Upregulating CDC20 and TRIB3 in Non-small Cell Lung Cancer Cells (비소세포폐암 발달 과정에서 TFAP2C에 의해 발현되는 CDC20과 TRIB3의 원암유전자 기능에 관한 연구)

  • Kim, Dain;Do, Hyunhee;Kang, JiHoon;Youn, BuHyun;Kim, Wanyeon
    • Journal of Life Science
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    • v.29 no.6
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    • pp.645-652
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    • 2019
  • Non-small cell lung cancer (NSCLC) has the infamous distinction of being the leading cause of global cancer-related death over the past decade, and novel molecular targets are urgently required to change this status. We previously conducted a microarray analysis to investigate the association of transcription factor activating enhancer-binding protein 2C (TFAP2C) with NSCLC and revealed its oncogenic roles in NSCLC development. In this study, to identify new biomarkers for NSCLC, we focused on several oncogenes from the microarray analysis that are transcriptionally regulated by TFAP2C. Here, the cell division cycle 20 (CDC20) and tribbles pseudokinase 3 (TRIB3) were subsequently found as potential potent oncogenes as they are positively regulated by TFAP2C. The results showed that the mRNA and protein levels of CDC20 and TRIB3 were down-regulated in two NSCLC cell lines (NCI-H292 and NCI-H838), which were treated with TFAP2C siRNA, and that the overexpression of either CDC20 or TRIB3 was responsible for promoting cell viability in both NSCLC cell lines. In addition, apoptotic levels of NCI-H292 and NCI-H838 cells treated with TFAP2C siRNA were found to be suppressed by the overexpression of either CDC20 or TRIB3. Together, these results suggest that CDC20 and TRIB3 are positively related to NSCLC tumorigenesis and that they should be considered as potential prognostic markers for developing an NSCLC therapy.

Genetic Screening of the Canine Transcription Factor AP-2 Beta(TFAP2B) Gene in Dogs with Patent Ductus Arteriosus(PDA) (동맥관 개존증(PDA)에 이환된 개에서의 전사 인자 AP-2 beta(TFAP2B) 유전자 스크리닝)

  • Nam, So-Jeong;Hyun, Chang-Baig
    • Journal of Veterinary Clinics
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    • v.26 no.2
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    • pp.123-129
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    • 2009
  • Patent ductus arteriosus(PDA) is an abnormal shunt between the descending aorta and pulmonary artery through the incompletely closed ductus arteriosus and is the most common congenital heart defect in dogs. Recent human genetic studies found that a the gene mutation in transcription factor AP-2 beta(TFAP2B) was responsible for syndromic cases of PDA. Mutations in the TFAP2B gene are associated with certain congenital cardiac defects in humans that include PDA. In this study, we isolated the entire coding exons of canine TFAP2B gene for genetic screening in dogs with PDA. Analysis of the deduced amino acid sequence suggested that the canine TFAP2B are phylogenetically closer to the human TFAP2B(100% identity in amino acid sequence) than mouse and rat. In cTFAP2B gene screening, one single c.936+203G>A base change was found in affected Maltese dogs with PDA. However, further screening found the same base change in one unaffected control dog, suggesting this base change might be polymorphism. No other base changes were found in other dog breeds enrolled in this study. Because the base change was located in the intronic region and found in an unaffected control dog, TFAP2B might not be responsible for familial PDA in Malteses and sporadic cases of other dog breeds, although the gene promoter region should be investigated before reaching to this conclusion. A future study that may take this study further would be to collect more samples and to screen TFAP2B in various breeds of dogs with PDA and other various congenital heart defects.

Effects of Transcription Factor AP2γ on Gene Expression of Desmosome Components in Mouse Embryos

  • Chung, Hak-Jae;Jeong, Jiyeon;Jeong, Yelin;Choi, Inchul
    • Reproductive and Developmental Biology
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    • v.40 no.2
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    • pp.23-26
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    • 2016
  • Transcription factor called activating enhancer binding protein 2C (AP2-gamma) is found in a variety of species and expressed from oocyte stage onwards, particularly restricted to the trophectoderm. Recent studies demonstrated that ablation of Tfap2c led to failure of tight junction biogenesis, particularly the knock-down embryos of Tfap2c did not form cavity from morula to blastocyst in mouse and pig. We speculated that the Tfa2pc may also be involved in desmosome biogenesis because blastocoel formation is coincident with the establishment of desmosome. To determine this, we depleted Tfap2c injecting siRNA into one-cell zygote and analysed the expression levels of genes that are required for desmosome complex such as PkP2, Pkp3, Dsc2, and Dsg2. We found only Pkp3 was up-regulated in the knockdowned morula embryos. Interestingly, upstream region of Pkp3 had putative Tfap2c binding sites. In conclusion, our results suggest that Tfap2c is not a crucial factor but somehow it might be involved in desmosome biogenesis directly or indirectly via Pkp3.

Profiling of Differentially Expressed Genes in Human Stem Cells by cDNA Microarray

  • Kim, Chul Geun;Lee, Jong Joo;Jung, Dae Young;Jeon, Jinseon;Heo, Hyen Seok;Kang, Ho Chul;Shin, June Ho;Cho, Yoon Shin;Cha, Kyung Joon;Kim, Chan Gil;Do, Byung-Rok;Kim, Kyung Suk;Kim, Hyun-Soo
    • Molecules and Cells
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    • v.21 no.3
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    • pp.343-355
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    • 2006
  • Stem cells are unique cell populations with the ability to undergo both self-renewal and differentiation, although a wide variety of adult stem cells as well as embryonic stem cells have been identified and stem cell plasticity has recently been reported. To identify genes implicated in the control of the stem cell state as well as the characteristics of each stem cell line, we analyzed the expression profiles of genes in human embryonic, hematopoietic ($CD34^+$ and $CD133^+$), and mesenchymal stem cells using cDNA microarrays, and identified genes that were differentially expressed in specific stem cell populations. In particular we were able to identify potential hESC signature-like genes that encode transcription factors (TFAP2C and MYCN), an RNA binding protein (IMP-3), and a functionally uncharacterized protein (MAGEA4). The overlapping sets of 22 up-regulated and 141 down-regulated genes identified in this study of three human stem cell types may also provide insight into the developmental mechanisms common to all human stem cells. Furthermore, our comprehensive analyses of gene expression profiles in various adult stem cells may help to identify the genetic pathways involved in self-renewal as well as in multi-lineage specific differentiation.