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Thermo Fisher
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Proteintech
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Thermo Fisher
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Image Search Results
Journal: Journal of Lipid Research
Article Title: Dynamic and differential regulation of proteins that coat lipid droplets in fatty liver dystrophic mice
doi: 10.1194/jlr.m000976
Figure Lengend Snippet: Fig. 5. The expression of CIDE genes is markedly induced in liver of fl d mice. Graphs depict results of RT- PCR analyses to quantify mRNA levels of CideA, CideB, and Fsp27 using liver RNA isolated from WT and fl d mice at indicated postnatal days. Values are normalized (= 1.0) to P8 WT control expression levels. * P < 0.05 versus WT littermates. Representative Western blotting analyses using hepatic protein isolated from lipid droplet fractions from WT and fl d mice at P8 and antibodies indicated at left are shown.
Article Snippet: Antibodies to glycogen synthase (Proteintech Group, Chicago, IL), peroxisome proliferator-activated receptor (PPAR ) (Santa Cruz, San Diego, CA), SREBP-1 (Santa Cruz),
Techniques: Expressing, Reverse Transcription Polymerase Chain Reaction, Isolation, Control, Western Blot
Journal: Journal of Lipid Research
Article Title: Dynamic and differential regulation of proteins that coat lipid droplets in fatty liver dystrophic mice
doi: 10.1194/jlr.m000976
Figure Lengend Snippet: Fig. 8. Forced-expression of SREBP-1 leads to increased expression of CideA. Hepatocytes isolated from adult WT mice were infected with adenovirus expressing a constitutively active form of SREBP-1a (Ad- caSREBP-1) or control adenovirus expressing green fl uorescent protein (GFP). The graph depicts the results of quantitative RT-PCR analyses of Cide and Plin family genes. * P < 0.05 versus GFP control.
Article Snippet: Antibodies to glycogen synthase (Proteintech Group, Chicago, IL), peroxisome proliferator-activated receptor (PPAR ) (Santa Cruz, San Diego, CA), SREBP-1 (Santa Cruz),
Techniques: Expressing, Isolation, Infection, Control, Quantitative RT-PCR
Journal: Journal of Lipid Research
Article Title: Dynamic and differential regulation of proteins that coat lipid droplets in fatty liver dystrophic mice
doi: 10.1194/jlr.m000976
Figure Lengend Snippet: Fig. 9. SREBP-1 directly activates Cidea gene transcription. Graphs represent mean (± SEM) luciferase ac- tivity in relative luciferase units (RLU) corrected for renilla luciferase activity and normalized (=1.0) to the value of empty expression vector-transfected cells. The results of studies using 293 cells cotransfected with a deletion series of Cidea promoter-luciferase reporter constructs and expression vectors driving expression of ca-SREBP-1 or empty vector control. Schematics of the various reporter constructs are shown at left. The location of canonical SREBP-1 response elements is denoted (SRE). TSS, transcriptional start site. * P <0.05 versus the value of empty vector control. ** P <0.05 versus caSREBP-1-stimulated pCID2 and pCID3. The images depict the results of chromatin immunoprecipitation (ChIP) studies using chromatin from hepato- cytes isolated from WT mice infected with adenovirus to overexpress caSREBP-1 (abbreviated “S”) and/or GFP (abbreviated “G”). Crosslinked proteins were immunoprecipitated with SREBP-1 antibody or IgG con- trol. Input represents 0.2% of the total chromatin used in the IP reactions. Primers specifi c for the Cidea promoter (The general annealing site of primers used is shown in A) or an exon of Acadm (negative control) were used to detect immunoprecipitated DNA.
Article Snippet: Antibodies to glycogen synthase (Proteintech Group, Chicago, IL), peroxisome proliferator-activated receptor (PPAR ) (Santa Cruz, San Diego, CA), SREBP-1 (Santa Cruz),
Techniques: Luciferase, Activity Assay, Expressing, Plasmid Preparation, Transfection, Construct, Control, Chromatin Immunoprecipitation, Isolation, Infection, Immunoprecipitation, Negative Control
Journal: JCI insight
Article Title: Human adipose beiging in response to cold and mirabegron.
doi: 10.1172/jci.insight.121510
Figure Lengend Snippet: Figure 7. Mirabegron treatment induces beige adipocyte markers in obese subjects. S.c. white adipose tissue (WAT) was isolated from obese subjects before and after treatment with 50 mg mirabegron per day for 10 weeks. (A and B) Uncoupling protein 1 (UCP1), (C and D) transmembrane protein 26 (TMEM26), and (E and F) cell death–inducing DNA fragmentation factor-α–like effector A (CIDEA) were analyzed by IHC as described in Methods and quantified. Scale bars: 50 μm. Data represent mean ± SEM (n = 6) and were analyzed by a paired, 2-tailed student’s t test; ***P < 0.001; **P < 0.01; *P < 0.05.
Article Snippet: The catalog numbers of the antibodies are as follows: UCP1 (ab10983, Abcam); custom antibody to the same UCP1 peptide (residues 145–159) was from ECM Biosciences (catalog J2648); TMEM26 (NBP2-27334, Novus Biologicals);
Techniques: Isolation
Journal: Scientific Reports
Article Title: Development of CIDEA reporter mouse model and its application for screening thermogenic drugs
doi: 10.1038/s41598-021-97959-0
Figure Lengend Snippet: Specificity of fluorescence reporter expression in brown and beige adipose tissue of the CIDEA reporter mice. ( a ) Immunofluorescence staining of CIDEA and tdTomato in adipose tissue frozen sections of homozygous (HOMO) CIDEA reporter mice. Nuclei were counterstained with DAPI (Blue). Bar = 20 μm. ( b ) Comparison of adipose tissue frozen section (BAT) or whole mount (iWAT and gWAT) of HOMO CIDEA reporter (TG) and wild type (WT) mice. Mice were maintained in cold (4 °C for a week) or room temperature (22 °C) condition. Nuclei and lipid droplets were counterstained with DAPI and HCS LipidTox deep red. Bar = 50 μm. ( c ) Ex vivo fluorescence imaging of tissues freshly isolated from WT, Heterozygous (HET), and HOMO CIDEA reporter mice. Quantification of fluorescence signal was normalized to each tissue weight. Data were analyzed by an unpaired, two-tailed t test (mean ± SEM; n = 3 *P < 0.05).
Article Snippet:
Techniques: Fluorescence, Expressing, Immunofluorescence, Staining, Comparison, Ex Vivo, Imaging, Isolation, Two Tailed Test
Journal: Scientific Reports
Article Title: Development of CIDEA reporter mouse model and its application for screening thermogenic drugs
doi: 10.1038/s41598-021-97959-0
Figure Lengend Snippet: Establishment of in vitro CIDEA reporter primary culture system. Stromal vascular fractions of adipose tissue from homozygous CIDEA reporter mice were isolated, cultured, and differentiated. ( a ) In vitro bioluminescence imaging of preadipocyte (Pre) and fully differentiated adipocytes (AC) from BAT. Cells were treated with growth medium containing d -luciferin (150 μg/ml). ( b ) Luciferase assay of cell lysate from ( a ). ( c ) Immunofluorescence staining image of differentiated adipocytes from BAT and iWAT. CIDEA (Green) and tdT (Red) double positive cells (CIDEA + tdT + ) were indicated with a dashed yellow line. Nuclei were counterstained with DAPI (Blue). Bar = 10 μm. ( d ) Quantification of the number of CIDEA + tdT + cells per field. ( e ) High magnification images of CIDEA + tdT + adipocytes. Nuclei and lipid were counterstained with DAPI and HCS LipidTOX. Bar = 5 μm. Data were analyzed by an unpaired, two-tailed t test in ( b , d ) (mean ± SEM; n = 3–4 *P < 0.05, ***P < 0.001).
Article Snippet:
Techniques: In Vitro, Isolation, Cell Culture, Imaging, Luciferase, Immunofluorescence, Staining, Two Tailed Test