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mouse pcdna3 egr1 plasmid  (Addgene inc)


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    Structured Review

    Addgene inc mouse pcdna3 egr1 plasmid
    Mouse Pcdna3 Egr1 Plasmid, supplied by Addgene inc, used in various techniques. Bioz Stars score: 93/100, based on 26 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+pcdna3+egr1+plasmid/pcDNA3-Egr1+(Plasmid+%2311729)/pm39682701-50-5-8
    Average 93 stars, based on 26 article reviews
    mouse pcdna3 egr1 plasmid - by Bioz Stars, 2026-09
    93/100 stars

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    Related Articles

    Transfection:

    Article Title: Overexpression of Egr1 Transcription Regulator Contributes to Schwann Cell Differentiation Defects in Neural Crest-Specific Adar1 Knockout Mice
    Article Snippet: Twenty-four hours prior to transfection, the cells were divided and plated at a density of 5 × 10 4 cells on 24-well plates coated with poly-L-lysine (Sigma-Aldrich, St. Louis, MO, USA) and maintained in SCM. .. Cells were transfected with the mouse pcDNA3-Egr1 plasmid (Addgene, Watertown, MA, USA) using the lipofectamine LTX with PLUS Reagent (Invitrogen, Thermo Fisher Scientific, Waltham, MA, USA) following the manufacturer’s instructions. ..

    Article Title: Overexpression of Egr1 Transcription Regulator Contributes to Schwann Cell Differentiation Defects in Neural Crest-Specific Adar1 Knockout Mice.
    Article Snippet: Twenty-four hours prior to transfection, the cells were divided and plated at a density of 5 × 104 cells on 24-well plates coated with poly-L-lysine (Sigma-Aldrich, St. Louis, MO, USA) and maintained in SCM. .. Cells were transfected with the mouse pcDNA3-Egr1 plasmid (Addgene, Watertown, MA, USA) using the lipofectamine LTX with PLUS Reagent (Invitrogen, Thermo Fisher Scientific, Waltham, MA, USA) following the manufacturer’s instructions. ..

    Plasmid Preparation:

    Article Title: Overexpression of Egr1 Transcription Regulator Contributes to Schwann Cell Differentiation Defects in Neural Crest-Specific Adar1 Knockout Mice
    Article Snippet: Twenty-four hours prior to transfection, the cells were divided and plated at a density of 5 × 10 4 cells on 24-well plates coated with poly-L-lysine (Sigma-Aldrich, St. Louis, MO, USA) and maintained in SCM. .. Cells were transfected with the mouse pcDNA3-Egr1 plasmid (Addgene, Watertown, MA, USA) using the lipofectamine LTX with PLUS Reagent (Invitrogen, Thermo Fisher Scientific, Waltham, MA, USA) following the manufacturer’s instructions. ..

    Article Title: Overexpression of Egr1 Transcription Regulator Contributes to Schwann Cell Differentiation Defects in Neural Crest-Specific Adar1 Knockout Mice.
    Article Snippet: Twenty-four hours prior to transfection, the cells were divided and plated at a density of 5 × 104 cells on 24-well plates coated with poly-L-lysine (Sigma-Aldrich, St. Louis, MO, USA) and maintained in SCM. .. Cells were transfected with the mouse pcDNA3-Egr1 plasmid (Addgene, Watertown, MA, USA) using the lipofectamine LTX with PLUS Reagent (Invitrogen, Thermo Fisher Scientific, Waltham, MA, USA) following the manufacturer’s instructions. ..



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    Addgene inc mouse egr1 expression vector
    Methylation dynamics of <t>EGR1</t> binding sites during mouse brain development. a EGR1 binding motif ( E value = 1.1e −252 ) identified from ChIP-seq data generated with mouse adult frontal cortices. b Genomic distribution of EGR1 peaks. c Distribution of histone marks H3K27ac, H3K4me1, and H3K4me3 surrounding EGR1 peaks. d Methylation dynamics of EGR1 binding sites during brain development from embryonic day 11.5 to 22 months, in neurons (NeuN+), and non-neuronal cells (NeuN−). e Correlation of methylation changes at EGR1 binding sites during mouse brain development and between cell specification. Only binding sites with at least ten methylation calls in all four methylomes were included. P -values were determined with Wilcoxon Rank Sum Test
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    Image Search Results


    A list of constructs used in the study.

    Journal: Frontiers in Cell and Developmental Biology

    Article Title: Regulation of otic neurosensory specification by Notch and Wnt signalling: insights from RNA-seq screenings in the embryonic chicken inner ear

    doi: 10.3389/fcell.2023.1245330

    Figure Lengend Snippet: A list of constructs used in the study.

    Article Snippet: EGR1 , pEgr1 , pcDNA3.1 , Full length mouse Egr1 , Addgene (ID#11729) Eileen Adamson .

    Techniques: Construct, Control, Membrane

    Methylation dynamics of EGR1 binding sites during mouse brain development. a EGR1 binding motif ( E value = 1.1e −252 ) identified from ChIP-seq data generated with mouse adult frontal cortices. b Genomic distribution of EGR1 peaks. c Distribution of histone marks H3K27ac, H3K4me1, and H3K4me3 surrounding EGR1 peaks. d Methylation dynamics of EGR1 binding sites during brain development from embryonic day 11.5 to 22 months, in neurons (NeuN+), and non-neuronal cells (NeuN−). e Correlation of methylation changes at EGR1 binding sites during mouse brain development and between cell specification. Only binding sites with at least ten methylation calls in all four methylomes were included. P -values were determined with Wilcoxon Rank Sum Test

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: Methylation dynamics of EGR1 binding sites during mouse brain development. a EGR1 binding motif ( E value = 1.1e −252 ) identified from ChIP-seq data generated with mouse adult frontal cortices. b Genomic distribution of EGR1 peaks. c Distribution of histone marks H3K27ac, H3K4me1, and H3K4me3 surrounding EGR1 peaks. d Methylation dynamics of EGR1 binding sites during brain development from embryonic day 11.5 to 22 months, in neurons (NeuN+), and non-neuronal cells (NeuN−). e Correlation of methylation changes at EGR1 binding sites during mouse brain development and between cell specification. Only binding sites with at least ten methylation calls in all four methylomes were included. P -values were determined with Wilcoxon Rank Sum Test

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: Methylation, Binding Assay, ChIP-sequencing, Generated

    Identification of the protein-protein interaction between EGR1 and TET enzymes by co-immunoprecipitation. a , b Endogenous association of EGR1 and TET proteins. EGR1 was immuno-precipitated from mouse frontal cortex, followed by western blot to detect TET1 ( a ). TET1 was immuno-precipitated from mouse frontal cortex, followed by western blot to detect EGR1 ( b ). Normal rabbit IgG served as a negative control for immunoprecipitation. IP, immunoprecipitation. c Interactions between full-length EGR1 (EGR1-FL) and TET1 deletion mutants. Flag-tagged EGR1-FL and HA-tagged TET1 deletion mutants as shown in the schematic illustration were co-expressed in HEK293T cells. d Interactions between TET1s-CD and EGR1 deletion mutants. HA-tagged TET1-CD and Flag-tagged Egr1 deletion mutants as shown in the schematic illustration were co-expressed in HEK293T cells. Protein-protein interactions were examined by IP-western blot using the antibodies indicated. Source data are provided as a Source Data file

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: Identification of the protein-protein interaction between EGR1 and TET enzymes by co-immunoprecipitation. a , b Endogenous association of EGR1 and TET proteins. EGR1 was immuno-precipitated from mouse frontal cortex, followed by western blot to detect TET1 ( a ). TET1 was immuno-precipitated from mouse frontal cortex, followed by western blot to detect EGR1 ( b ). Normal rabbit IgG served as a negative control for immunoprecipitation. IP, immunoprecipitation. c Interactions between full-length EGR1 (EGR1-FL) and TET1 deletion mutants. Flag-tagged EGR1-FL and HA-tagged TET1 deletion mutants as shown in the schematic illustration were co-expressed in HEK293T cells. d Interactions between TET1s-CD and EGR1 deletion mutants. HA-tagged TET1-CD and Flag-tagged Egr1 deletion mutants as shown in the schematic illustration were co-expressed in HEK293T cells. Protein-protein interactions were examined by IP-western blot using the antibodies indicated. Source data are provided as a Source Data file

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: Immunoprecipitation, Western Blot, Negative Control

    EGR1 recruits TET1 to its target sites. a TET1 ChIP-qPCR assay in wild-type mouse frontal cortices. b Sequential ChIP-qPCR assay in wild-type mouse frontal cortices. The first antibody used was anti-TET1; the secondary antibody used was anti-EGR1 and normal rabbit IgG. Gcg locus serves as negative control for EGR1 binding. c ChIP-qPCR assay in frontal cortices of Egr1KO and wild-type mice. TET1 enrichment is normalized to the enrichment in WT. P -values were calculated with t -test, * P < 0.05, ** P < 0.01, *** P < 0.001. n.s., not significant. Error bars ± standard deviation (s.d.) from three technical replicates. d Venn diagrams show the overlapped TET1 peaks generated with two distinct antibodies (91171 and 5D6, Active Motif) or from WT and Egr1KO frontal cortices. e The distribution of TET1 peaks relatively to their nearest EGR1 peaks. The distance of TET1 peak to its nearest EGR1 peak refers to the number of nucleotides between the centers of two peaks

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: EGR1 recruits TET1 to its target sites. a TET1 ChIP-qPCR assay in wild-type mouse frontal cortices. b Sequential ChIP-qPCR assay in wild-type mouse frontal cortices. The first antibody used was anti-TET1; the secondary antibody used was anti-EGR1 and normal rabbit IgG. Gcg locus serves as negative control for EGR1 binding. c ChIP-qPCR assay in frontal cortices of Egr1KO and wild-type mice. TET1 enrichment is normalized to the enrichment in WT. P -values were calculated with t -test, * P < 0.05, ** P < 0.01, *** P < 0.001. n.s., not significant. Error bars ± standard deviation (s.d.) from three technical replicates. d Venn diagrams show the overlapped TET1 peaks generated with two distinct antibodies (91171 and 5D6, Active Motif) or from WT and Egr1KO frontal cortices. e The distribution of TET1 peaks relatively to their nearest EGR1 peaks. The distance of TET1 peak to its nearest EGR1 peak refers to the number of nucleotides between the centers of two peaks

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: Negative Control, Binding Assay, Standard Deviation, Generated

    Cooperativity of EGR1 and TET1 modulate the enhancer activity of EGR1 binding sites. a Luciferase reporter assays for the control vector pCpGL-P and constructs with Galnt9 , Npas4 locus. Fold change was normalized to the control vector pCpGL-P. Luciferase reporter assays for unmethylated or methylated Galnt9 ( b ) and Npas4 ( c ) constructs under either Egr1 / Tet1 singularly or co-expression in primary cortical neurons. In figure b – c , fold changes were normalized to the methylated vectors without Egr1/Tet1 overexpression. Luciferase activity was measured at 48 h after transfection and normalized against the activity of a co-transfected firefly construct. mCpG represents methylated constructs. P -values were determined by t -test, * P < 0.05, ** P < 0.01. Values represent mean ± s.d. from three biological replicates

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: Cooperativity of EGR1 and TET1 modulate the enhancer activity of EGR1 binding sites. a Luciferase reporter assays for the control vector pCpGL-P and constructs with Galnt9 , Npas4 locus. Fold change was normalized to the control vector pCpGL-P. Luciferase reporter assays for unmethylated or methylated Galnt9 ( b ) and Npas4 ( c ) constructs under either Egr1 / Tet1 singularly or co-expression in primary cortical neurons. In figure b – c , fold changes were normalized to the methylated vectors without Egr1/Tet1 overexpression. Luciferase activity was measured at 48 h after transfection and normalized against the activity of a co-transfected firefly construct. mCpG represents methylated constructs. P -values were determined by t -test, * P < 0.05, ** P < 0.01. Values represent mean ± s.d. from three biological replicates

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: Activity Assay, Binding Assay, Luciferase, Plasmid Preparation, Construct, Methylation, Expressing, Over Expression, Transfection

    Correlations of DNA methylation and gene expression profiles between Egr1KO and Tet1KO frontal cortices. Methylation correlations ( a ) and gene expression correlations ( b ) between Egr1KO and Tet1KO mice. c Aberrant DNA methylation on Galnt9 and Npas4 loci. Each CpG is represented by a circle; yellow in circles indicates the percentage of methylation in each CpG site. The statistical significance of methylation differences between Egr1/Tet1KO and WT mice was evaluated with the Wilcoxon rank-sum test. d The correlations between DNA methylation levels of Galnt9, Npas4 loci and corresponding gene expression during brain development from embryonic day 11.5 (E11.5) (denoted in blue color) to 22 months (22 mo) (denoted in red color)

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: Correlations of DNA methylation and gene expression profiles between Egr1KO and Tet1KO frontal cortices. Methylation correlations ( a ) and gene expression correlations ( b ) between Egr1KO and Tet1KO mice. c Aberrant DNA methylation on Galnt9 and Npas4 loci. Each CpG is represented by a circle; yellow in circles indicates the percentage of methylation in each CpG site. The statistical significance of methylation differences between Egr1/Tet1KO and WT mice was evaluated with the Wilcoxon rank-sum test. d The correlations between DNA methylation levels of Galnt9, Npas4 loci and corresponding gene expression during brain development from embryonic day 11.5 (E11.5) (denoted in blue color) to 22 months (22 mo) (denoted in red color)

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: DNA Methylation Assay, Expressing, Methylation

    A simplified model for EGR1 and TET1 interaction linking environmental stimuli to brain methylome programming. At birth, Egr1 -mediated and neuronal activity-induced genes are silenced with methylated EGR1 binding sites. During postnatal development and upon neuronal activity, the increase in expression of Tet1 and Egr1 leads to the demethylation of EGR1 binding sites to facilitate the binding of co-factors and shifts the genes to either “Poised” or “ON” states. DNA methylation cannot block EGR1 binding but may prevent the bindings of other transcription factors, which bind to the regions adjacent to EGR1 binding sites. Thus, the demethylation of EGR1 binding sites may facilitate the formation of stronger transcription enhanceosomes

    Journal: Nature Communications

    Article Title: EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

    doi: 10.1038/s41467-019-11905-3

    Figure Lengend Snippet: A simplified model for EGR1 and TET1 interaction linking environmental stimuli to brain methylome programming. At birth, Egr1 -mediated and neuronal activity-induced genes are silenced with methylated EGR1 binding sites. During postnatal development and upon neuronal activity, the increase in expression of Tet1 and Egr1 leads to the demethylation of EGR1 binding sites to facilitate the binding of co-factors and shifts the genes to either “Poised” or “ON” states. DNA methylation cannot block EGR1 binding but may prevent the bindings of other transcription factors, which bind to the regions adjacent to EGR1 binding sites. Thus, the demethylation of EGR1 binding sites may facilitate the formation of stronger transcription enhanceosomes

    Article Snippet: Flag-tagged mouse EGR1 expression vector was obtained from Addgene (plasmid 11729).

    Techniques: Activity Assay, Methylation, Binding Assay, Expressing, DNA Methylation Assay, Blocking Assay