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Image Search Results
Journal:
Article Title: Upregulation of CD40 Expression on Endothelial Cells Infected with Human Cytomegalovirus
doi: 10.1128/JVI.76.24.12803-12812.2002
Figure Lengend Snippet: Immunoblot analysis of CD40 in whole-cell lysates. Cell monolayers were infected with HCMV TB40E at an MOI of 1 (inf.) or mock infected (noninfected [n.i.]). Cell lysates were prepared at the indicated times and analyzed by immunoblotting. (A) CD40 protein levels were detected with a polyclonal rabbit serum directed against human CD40. (B) Blots from panel A were stripped and reprobed with a rabbit serum directed against calreticulin. (C) Signal intensities from panels A and B were densitometrically quantified; data represent the ratio of CD40 to calreticulin (y axis) versus time p.i. (x axis). (D) Protein lysates from infected or noninfected cells were treated with N-glycosidase F (+) or left untreated (−) prior to immunoblot analysis with anti-CD40 antibodies. Molecular masses are given in kilodaltons.
Article Snippet: The following monoclonal antibodies or polyclonal sera were used: mouse IgG1-fluorescein isothiocyanate (FITC)-conjugated anti-human CD54 (Calbiochem, La Jolla, Calif.), anti-human major histocompatibility complex class I (MHC-I) (BD PharMingen, San Diego, Calif.), mouse IgG1-FITC anti-human CD40 (Dianova, Hamburg, Germany), mouse IgG1-FITC anti-human CD62E (Calbiochem), antibodies G28.5 and Ro1 (anti-human CD40) (gifts from H. Engelmann, Institute for Immunology, University of Munich, Munich, Germany) ( 39 ), polyclonal rabbit anti-CD40 serum (Santa Cruz Biotechnology),
Techniques: Western Blot, Infection
Journal: British Journal of Cancer
Article Title: Mechanism of action for N-substituted benzamide-induced apoptosis
doi: 10.1038/sj.bjc.6600136
Figure Lengend Snippet: Induction of apoptosis in 70Z/3 cells treated with 3CPA at 250 μ M and 500 μ M . ( A ) Cytochrome c release into the cytosol after exposure to 3CPA for indicated time periods measured by Western blot analysis. ( B ) Pro-caspase-9 processing determined in cytosolic fractions after exposure to 3CPA. Actin was used as an internal standard of the protein load and the results shown are representatives of two separate experiments. ( C ) Caspase inhibitors reduce 3CPA-induced apoptosis in 70Z/3 cells. Apoptosis, measured as AnnexinV + 7AAD − cells, was determined after exposure to 3CPA at 250 μ M (left) and 500 μ M (right) for 24 h. The pan-caspase inhibitor ZVAD-fmk (50 μ M , n =4), the caspase-9 inhibitor LEHD-fmk (50 μ M , n =3), or the caspase-8 inhibitor IETD-fmk (50 μ M , n =3) were added 1 h before treatment with 3CPA. The level of apoptosis is expressed relative to the level in cell cultures treated with the inhibitor only. Results show mean±s.d., and (*) indicates a statistical difference compared to 3CPA only (paired t -test, P <0.05).
Article Snippet: To detect pro-caspase-9 or active caspase-9, a rabbit polyclonal anti-mouse caspase-9 (Santa Cruz) or a
Techniques: Western Blot
Journal: British Journal of Cancer
Article Title: Mechanism of action for N-substituted benzamide-induced apoptosis
doi: 10.1038/sj.bjc.6600136
Figure Lengend Snippet: Over-expression of Bcl-2 in 70Z/3 cells inhibits 3CPA-induced apoptosis. ( A ) FACS-analysis of 70Z/3 (upper panel) and 70Z/3 Bcl-2+ (lower panel) cells after exposure to 3CPA (500 μ M ) for 18 h. 7AAD negative (viable) cells were gated (gate A) and analysed for Annexin V + expression (% of gated cells). ( B ) Levels of Bcl-2 and cytochrome c expression were determined by Western blot analysis in mitochondrial enriched fractions after 18 h incubation with 3CPA at the indicated concentrations (30 μg protein per lane). ( C ) Pro-caspase-9 processing into active caspase-9 was determined in the cytosolic fraction after 18 h incubation with 3CPA at the indicated concentrations. Actin was used as an internal standard to control the amount of cytosolic protein loaded in each lane. Results shown are representatives of two independent experiments.
Article Snippet: To detect pro-caspase-9 or active caspase-9, a rabbit polyclonal anti-mouse caspase-9 (Santa Cruz) or a
Techniques: Over Expression, Expressing, Western Blot, Incubation
Journal: British Journal of Cancer
Article Title: Mechanism of action for N-substituted benzamide-induced apoptosis
doi: 10.1038/sj.bjc.6600136
Figure Lengend Snippet: N-substituted benzamides induce cytochrome c release and activation of caspase-9 in HL60 cells. ( A ) Cytochrome c release induced by MCA (500 μ M ) and 3CPA (250 μ M ) in HL60 cells after 24 and 48 h, measured by Western blot analysis of mitochondria or cytosol fractions (30 μg protein/lane). Cells were incubated with etoposide for 6 and 18 h at 100 μ M as a positive control. ( B ) Activation of caspase-9 after treatment of HL60 cells with 3CPA at 250 and 500 μ M for 12 and 18 h (48 μg protein per lane). One representative experiment out of two is shown.
Article Snippet: To detect pro-caspase-9 or active caspase-9, a rabbit polyclonal anti-mouse caspase-9 (Santa Cruz) or a
Techniques: Activation Assay, Western Blot, Incubation, Positive Control
Journal: The Journal of Cell Biology
Article Title: The keratin-binding protein Albatross regulates polarization of epithelial cells
doi: 10.1083/jcb.200803133
Figure Lengend Snippet: Impaired AJC formation in Albatross knockdown cells. (A) Double staining for Albatross (red) and the undercoat proteins (green) for each AJC component: TJ, ZO-1; AJ, afadin; DS, desmoplakin. Top and bottom columns show projections of x-y planes and z sections, respectively. Albatross knockdown A549 (Albatross KD) cells lack accumulation of these proteins at the cell–cell borders except in regions where residual Albatross is present. (B) Cell–cell adhesive properties evaluated by a cell aggregation assay. In the differential interference contrast images, control cells show cell aggregation. With Albatross knockdown A549 (A1050 and A1160) cells, the aggregated cell population is reduced and free cells are increased. The percentages of single cells in total cells (mean ± SD) are: control, 36.1 ± 3.9; A1050, 52.4 ± 2.8; A1160 cells, 59.4 ± 10.2. n = 4 and P < 0.01. (C) Immunoelectron microscopy of A549 cells with anti-Albatross antibodies. Note that the cytoplasm in the vicinity of AJCs is labeled. TJ, AJ, and DS are indicated. Arrows indicate cell–cell contacts. (D) Quantitative data from C. (E) BC fraction and AJ fraction were immunostained for Albatross with the indicated AJC proteins, PKCζ or Par3. Note that Albatross is well colocalized with them. (F) Immunoblotting of fractions derived from mouse liver: homogenates (left), BC (middle), and AJ (right). Not only Albatross but also Par3 is enriched in line with the concentrations of the indicated AJC components. (G) Immunoprecipitation of A549 cells with anti-Albatross antibodies. Start and IP indicate starting lysates and immunoprecipitates with preimmune (Pre.) and anti-Albatross (αAlb.) antibodies, respectively. Note the Par3 precipitation with Albatross. Among AJC components, ZO-1 also coprecipitated. (H) Immunoprecipitation analysis with tagged Albatross and Par3. Start and IP indicate starting lysates and immunoprecipitates with anti-GFP antibodies, respectively. Left lanes show results for negative controls expressing GFP alone. Par3 was the most precipitated with GFP-Albatross among coexpressed myc-Par3, -Par6, and -PKCλ. Bars: (A) 10 μm; (B) 100 μm; (C) 0.1 μm; (E, BC) 13 μm; (E, AJ) 10 μm.
Article Snippet: The following primary antibodies were used: monoclonal mouse anti-keratin 8 (Ks 8.7; Progen Pharmaceuticals), monoclonal mouse anti-keratin 18 (CY-90; Sigma-Aldrich), polyclonal mouse anti-pan keratin (Sigma-Aldrich), polyclonal guinea pig anti-K8/18 (Progen Pharmaceuticals), polyclonal guinea pig anti–desmoplakin 1 (Progen Pharmaceuticals), monoclonal mouse anti–desmoplakin 1 and 2 (Progen Pharmaceuticals), monoclonal mouse anti–ZO-1 (1; BD Biosciences), monoclonal rat
Techniques: Double Staining, Immuno-Electron Microscopy, Labeling, Western Blot, Derivative Assay, Immunoprecipitation, Expressing
Journal: The Journal of Cell Biology
Article Title: The keratin-binding protein Albatross regulates polarization of epithelial cells
doi: 10.1083/jcb.200803133
Figure Lengend Snippet: Functions of keratins and Albatross–Par3 complexes. (A–C) The amounts of Albatross protein and mRNA were analyzed in both keratin 8 and keratin 18 (K8/18)-introduced SW13 cells. As a control, an empty vector was transfected. As loading controls, α-tubulin and GAPDH were used. Two independent experiments were performed. (A) Immunoblotting. In transiently K8/18-introduced SW13 cells, the amount of Albatross protein is elevated, along with the amount of keratin 18. (B) With stable lines, the same results were obtained. (C) RT-PCR. In K8/18-introduced SW13 cells, the mRNA level of K18 is elevated, but not that of Albatross. β-actin is included as an internal control. (D) Double staining for K8/18 and the indicated proteins: Albatross, AJC components of ZO-1 and afadin, and Par3. (top) In control cells, K8/18 is absent and only limited amounts of Albatross are apparent at cell–cell junctions. In stably K8/18-introduced SW13 cells, Albatross is well localized in cell–cell junctions compared with control cells. (middle and bottom) ZO-1, afadin, and Par3 similarly accumulated at the cell–cell borders in stably K8/18-introduced SW13 cells. (E) Immunostaining of stably K8/18-introduced SW13 cells transfected with control or Albatross siRNA. Note that ZO-1, afadin, and Par3 are reduced at cell–cell borders with knockdown of Albatross. (F) A model for the regulation of AJC and lateral domains with the Albatross–Par3 complex and keratins. Albatross–Par3 complexes regulate the formation of AJC and maintain lateral membrane identity. However, Par3 without Albatross regulates apical structures. Keratins stabilize Albatross, promoting the formation of AJC. Knockdown effects are also indicated. Bars, 10 μm.
Article Snippet: The following primary antibodies were used: monoclonal mouse anti-keratin 8 (Ks 8.7; Progen Pharmaceuticals), monoclonal mouse anti-keratin 18 (CY-90; Sigma-Aldrich), polyclonal mouse anti-pan keratin (Sigma-Aldrich), polyclonal guinea pig anti-K8/18 (Progen Pharmaceuticals), polyclonal guinea pig anti–desmoplakin 1 (Progen Pharmaceuticals), monoclonal mouse anti–desmoplakin 1 and 2 (Progen Pharmaceuticals), monoclonal mouse anti–ZO-1 (1; BD Biosciences), monoclonal rat
Techniques: Plasmid Preparation, Transfection, Western Blot, Reverse Transcription Polymerase Chain Reaction, Double Staining, Stable Transfection, Immunostaining
Journal: medRxiv
Article Title: Polymorphism in IFNAR contributes to glucocorticoid response and outcome in ARDS and COVID-19
doi: 10.1101/2022.03.10.22272123
Figure Lengend Snippet: (A ) STAT1 expression in the lung after 4-day culture in the presence of IFN beta with or without hydrocortisone (HC). ( B) pSTAT1 expression in the same specimens as in A. ( C) Example photomicrographs showing higher STAT2 expression in a TT patient than in a CT patient and the effect of HC on its nuclear translocation. Most STAT2 remains in the cytoplasm of the CT patients, whereas nuclear expression is prominent in the TT patient. Indicated insets are shown in the bottom row. Arrows. ( D ) Combined results of all patients noting that two CT samples are excluded in the data as the patients were already under glucocorticoid treatment at the time of sample acquisition. Ns, not significant; *P<0.05; **P<0.01; and ***P<0.001
Article Snippet: The first stage antibodies were anti-alpha chain of the IFN alpha/beta receptor (
Techniques: Expressing, Translocation Assay