| Literature DB >> 21211055 |
Haifang Qiu1, Fengli Wang, Chuxin Liu, Xuewen Xu, Bang Liu.
Abstract
BACKGROUND: TEAD1 (TEA domain family member 1) is constitutively expressed in cardiac and skeletal muscles. It acts as a key molecule of muscle development, and trans-activates multiple target genes involved in cell proliferation and differentiation pathways. However, its target genes in skeletal muscles, regulatory mechanisms and networks are unknown.Entities:
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Year: 2011 PMID: 21211055 PMCID: PMC3025863 DOI: 10.1186/1471-2199-12-1
Source DB: PubMed Journal: BMC Mol Biol ISSN: 1471-2199 Impact factor: 2.946
Figure 1Gene Ontology (GO) classifications of biological processes of TEAD1 target genes. On the basis of the annotated genes that matched our unique tags, GO analysis was carried out using the DAVID tool.
Primers used in this paper.
| Primer name | Primer sequnence |
|---|---|
| TEA-cdsF | 5-CTA |
| TEA-cdsR | 5-CCG |
| FOX-promoterF | 5-GGATTGTGAAGGTGCGATCTG-3 |
| FOX-promoterR | 5-AGGTGTGTCACTGGACCCTCA-3 |
| COL-F | 5-GCCAGAGGTGCTGTCAC-3 |
| COL-R | 5-GGTGTGTCTGGCATGGCAG-3 |
| FOX-forwardF | 5-CCG |
| FOX-forwardR | 5-CCC |
| FOX-reverseF | 5-CCC |
| FOX-reverseR | 5-CCG |
| FOX-qpcrF | 5-ATGTGACATGGAGTCCATCATCC-3 |
| FOX-qpcrR | 5-TGTCCACTTGCTGAGAGCAGAT-3 |
| β-qpcrL | 5-TGTACCCAGGCATTGCTGACA-3 |
| β-qpcrR | 5-GACTCATCGTACTCCTGCTTGCT-3 |
| FOX-W | 5-TGTGTGTTATTTTTGAGATGGAATGTGGGGCTGGCTGAACGGCT-3 |
| FOX-T | 5-TGTGTGTTATTTTTGAGATCTACCATGGGGCTGGCTGAACGGCT-3 |
| FOX-WB | 5-TGTGTGTTATTTTTGAGATGGAATGTGGGGCTGGCTGAACGGCT-3 |
| siTEA-F1 | 5-GGUUCUUGCCAGAAGGAAATT-3 |
| siTEA-R1 | 5-UUUCCUUCUGGCAAGAACCTG-3 |
| siTEA-F2 | 5-GGGCGGACUUAAACUGCAATT-3 |
| siTEA-R2 | 5-UUGCAGUUUAAGUCCGCCCAG-3 |
| siTEA-F3 | 5-CACCUACCAGAGAAAUAUATT-3 |
| siTEA-R3 | 5-UAUAUUUCUCUGGUAGGUGTT-3 |
| siTEA-NF | 5-UUCUCCGAACGUGUCACGUTT-3 |
| siTEA-NR | 5-ACGUGACACGUUCGGAGAATT-3 |
The restriction enzyme recognition sites are underlined
Figure 2Validation of the enrichment of the .
Figure 3EMSA analysis of TEAD1 binding site in the . Biotin-labeled oligonucleotide probes for the TEAD1 FoxO3a binding site were incubated with mouse skeletal muscle extracts. Competition experiments were performed using a 100-fold excess of mutant or unlabeled TEAD1 FoxO3a probes. Supershift assays were performed with anti-TEAD1 antibody. Arrows indicate the resulting bandshifts (FOX-W: normal probe; FOX-T: mutant probe; FOX-WB: unlabeled probe).
Figure 4The . The graphical representation shown is the sequence of a partial promoter of the FoxO3a gene. The cis-sequences are shown in boldface and underlined.
Figure 5Transient-transfection assays of . (A) A transient-transfection experiment in C2C12 cells was performed with a segment of FoxO3a cloned in either the forward or reverse upstream orientation of luciferase. The y axis of the graph represents the relative luciferase activity, with the transfected material shown on the x axis. The pGL3-Basic represents the luciferase vector lacking a promoter. (B) A transient-transfection assay was performed with the FoxO3a promoter-luciferase reporter transfected into C2C12 cells in the presence of a TEAD1 expression vector or the pCDNA3.1 vector as a control. The statistical significance of the differences between the FoxO3a forward and FoxO3a reverse, FoxO3a with TEAD1 and FoxO3a with pcDNA3.1 were analyzed by the Student's t-test, * P < 0.05.
Figure 6Over-expression of TEAD1 experiment in C2C12 cells. pcDNA3.1 vector or pcDNA-TEAD1 vector or lipofectamine 2000 control transiently transfected the C2C12 cells. FoxO3a expression was up-regulated about 2-fold compared to the control.
Figure 7Knock down of . (A) C2C12 cells were treated with siRNA against TEAD1 (SiTEAD1) or negative control (SiControl) or lipofectamine 2000 control (LipoControl) and western blot confirmed the suppression of TEAD1 in SiTEAD1 treated cells. (B) qRT-PCR analysis of FoxO3a using RNA extracted from SiTEAD1 or SiControl or LipoControl. FoxO3a expression was down-regulated about 50% compared to β-actin.
Figure 8Schematic representation of the pGL3-Basic vector and the relative positions of the restriction sites used in these experiments. The arrow represents the direction of transcription of the vector. The (+) and (-) orientations are defined as the positioning of the insert with respect to the luciferase gene in the same or reversed direction as it occurs with respect to the FoxO3a coding sequence.
Figure 9Yield and size of DNA precipitated with anti-TEAD1 antibody from mouse skeletal muscle.