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Image Search Results
Journal: bioRxiv
Article Title: A neuropsychiatric disease-associated mutation in LRRC8B disrupts cellular Ca²⁺ signaling, mitochondrial function, and bioenergetics
doi: 10.64898/2026.04.16.718892
Figure Lengend Snippet: Volcano plot showing LC–MS/MS–based proteomic analysis of GFP pull-down samples from HEK293T cells expressing GFP-tagged wild-type (WT) or mutant LRRC8B. The x-axis represents log₂ fold change (mutant vs WT), and the y-axis shows −log₁₀ adjusted p-value. Proteins enriched in WT samples are shown on the left, while those enriched in mutant samples are shown on the right. Selected significantly enriched proteins are labeled. VDAC1 is identified as a WT-enriched interactor.
Article Snippet: The
Techniques: Liquid Chromatography with Mass Spectroscopy, Expressing, Mutagenesis, Labeling
Journal: bioRxiv
Article Title: A neuropsychiatric disease-associated mutation in LRRC8B disrupts cellular Ca²⁺ signaling, mitochondrial function, and bioenergetics
doi: 10.64898/2026.04.16.718892
Figure Lengend Snippet: Representative immunoblot images showing VDAC protein levels in total cell lysates and isolated mitochondrial fractions from cells transfected with GFP-tagged LRRC8B WT (W) or mutant Y380S (M) constructs. Actin (∼42 kDa) is included as a loading control for total lysates. Red boxes indicate the regions that were cropped and presented in the main figures. Molecular weight markers are shown where applicable.
Article Snippet: The
Techniques: Western Blot, Isolation, Transfection, Mutagenesis, Construct, Control, Molecular Weight
Journal: bioRxiv
Article Title: A neuropsychiatric disease-associated mutation in LRRC8B disrupts cellular Ca²⁺ signaling, mitochondrial function, and bioenergetics
doi: 10.64898/2026.04.16.718892
Figure Lengend Snippet: (A) Representative immunoblot images showing protein levels of GFP-tagged LRRC8B (WT and mutant) and VDAC in input lysates used for pull-down assays. (B–C) Immunoblot analysis of four independent immunoprecipitation (IP) experiments. Bands at ∼120 kDa confirm successful pull-down of GFP-tagged LRRC8B (WT and mutant) using an anti-GFP antibody. VDAC (∼32 kDa) bands indicate co-precipitation of VDAC with LRRC8B WT and mutant proteins. VDAC levels were normalized to the corresponding LRRC8B (WT or mutant) levels for quantification. Red boxes highlight the regions that were cropped and presented in the main figures. Molecular weight markers are shown where applicable.
Article Snippet: The
Techniques: Western Blot, Mutagenesis, Immunoprecipitation, Molecular Weight
Journal: Molecular and Cellular Biology
Article Title: SUMO Modification of the RNA-Binding Protein La Regulates Cell Proliferation and STAT3 Protein Stability
doi: 10.1128/MCB.00129-17
Figure Lengend Snippet: Sumoylation of La increases STAT3 mRNA binding by La. (A) RT-qPCR analysis showing no significant difference in STAT3 mRNA levels in GFP-LaWT (Wt)- and GFP-LaSD (K41/200R)-expressing cells. The values are normalized against GAPDH mRNA levels (n = 3). (B) RT-PCR on RNA samples prepared from RIP experiments using HEK293 cells stably overexpressing GFP-LaWT (Wt) or GFP-LaSD (K41/200R). Significantly less STAT3 mRNA was associated with GFP-LaSD than with GFP-LaWT. The asterisks indicate a significant difference (P < 0.01), as determined by Student's t test (n = 3). The data represent means and SD of the results of independent experiments.
Article Snippet: For STAT3 overexpression, the control (pEGFP-C1) or the RFP-STAT3 (
Techniques: Binding Assay, Quantitative RT-PCR, Expressing, Reverse Transcription Polymerase Chain Reaction, Stable Transfection
Journal: Molecular and Cellular Biology
Article Title: SUMO Modification of the RNA-Binding Protein La Regulates Cell Proliferation and STAT3 Protein Stability
doi: 10.1128/MCB.00129-17
Figure Lengend Snippet: Sumoylation of La promotes cell proliferation via a STAT3-mediated mechanism. (A) Representative immunoblot of STAT3 in HEK293 cells transduced with shC, sh3, and sh5 lentiviral constructs. GAPDH was used as a loading control. (B) RT-qPCR analysis showing no significant difference in STAT3 mRNA levels in HEK293 cells transduced with shC, sh3, and sh5 lentiviral constructs. The values are normalized against GAPDH mRNA levels (n = 3). (C) Representative immunoblot showing STAT3 protein levels in GFP-LaWT- and GFP-LaSD-expressing cells. GAPDH was used as a loading control. (D) Densitometry analysis showing significantly lower STAT3 protein expression in GFP-LaSD-expressing cells than in GFP-LaWT-expressing cells. The values are normalized against GAPDH protein levels (n = 3). (E) Representative fluorescence images showing transient transfection of control (GFP) and RFP-STAT3 in cells transduced with lentiviral constructs expressing shC or sh5. The transfection efficiency was ∼30%. (F) Overexpression of STAT3 (RFP-STAT3) restored the numbers of La-depleted (sh5) cells (n = 4; *, P = 0.0358). (G) Representative fluorescence images showing transient transfection of control and RFP-STAT3 in GFP-, GFP-LaWT-, and GFP-LaSD-expressing cells. The transfection efficiency was ∼30%. (H) Overexpression of STAT3 (RFP-STAT3) restored GFP-LaSD cell numbers (n = 3; *, P = 0.015). The asterisks indicate significant differences (P < 0.05), as determined by Student's t test. NS, not significant. The data represent means and SD of the results of independent experiments.
Article Snippet: For STAT3 overexpression, the control (pEGFP-C1) or the RFP-STAT3 (
Techniques: Western Blot, Transduction, Construct, Quantitative RT-PCR, Expressing, Fluorescence, Transfection, Over Expression
Journal: Molecular and Cellular Biology
Article Title: SUMO Modification of the RNA-Binding Protein La Regulates Cell Proliferation and STAT3 Protein Stability
doi: 10.1128/MCB.00129-17
Figure Lengend Snippet: Global translation is not impaired in GFP-LaWT or GFP-LaSD cells, and sumoylation of La has a minor impact on STAT3 mRNA translation in HEK293 cells. (A and B) Autoradiography (A) and corresponding Coomassie-stained gel (B) of [35S]methionine-labeled total proteins of GFP-LaWT- and GFP-LaSD-expressing cells (30 min and 60 min). (C) Overlay of polyribosome fractionation profiles of two gradients loaded with extracts from GFP-LaWT (Wt-I/II) cells and two gradients loaded with extracts from GFP-LaSD (SD-I/II) cells. (D) STAT3 mRNA distribution in polyribosomal gradients from GFP-LaWT or GFP-LaSD cells as analyzed by RT-qPCR. (E) GADPH mRNA distribution in polyribosomal gradients from GFP-LaWT or GFP-LaSD cells as analyzed by RT-qPCR. The results are representative of three independent experiments.
Article Snippet: For STAT3 overexpression, the control (pEGFP-C1) or the RFP-STAT3 (
Techniques: Autoradiography, Staining, Labeling, Expressing, Fractionation, Quantitative RT-PCR
Journal: Molecular and Cellular Biology
Article Title: SUMO Modification of the RNA-Binding Protein La Regulates Cell Proliferation and STAT3 Protein Stability
doi: 10.1128/MCB.00129-17
Figure Lengend Snippet: Sumoylation of La promotes STAT3 protein stability. (A) GFP-LaWT- and GFP-LaSD-expressing cells were treated with CHX (20 μM) for the indicated times and analyzed for STAT3 expression by immunoblot analysis. GAPDH protein levels were analyzed as a loading control. (B) Quantification of immunoblots revealed that STAT3 stability was reduced in GFP-LaSD cells compared to GFP-LaWT (n = 3; *, P = 0.022 at 6 h and P = 0.023 at 12 h). The asterisks indicate significant differences (P < 0.05), as determined by Student's t test. (C) GFP-LaWT- and GFP-LaSD-expressing cells were treated with CHX (20 μM) and the proteasome inhibitor MG132 (10 μg/ml) for the indicated times and analyzed for STAT3 expression by immunoblot analysis. GAPDH protein levels were analyzed as a loading control. (D) Quantification of immunoblots revealed no significant difference in STAT3 stability in GFP-LaSD and GFP-LaWT cells (n = 3; P = 0.24 at 6 h; P = 0.51 at 12 h). (E) Representative immunoblot showing global ubiquitination in GFP-LaWT and GFP-LaSD cells treated or not treated with the proteasome inhibitor MG132 (10 μg/ml). GAPDH protein levels were analyzed as a loading control. (F) Representative immunoblot showing ubiquitination of STAT3 in GFP-LaSD cells in the absence or presence of MG132. GFP-LaWT- and GFP-LaSD-expressing cells were cotransfected with Flag-tagged STAT3 (STAT3-Flag) and HA-tagged ubiquitin (UB-HA). After 24 h, the cells were treated or not treated with MG132 (10 μg/ml) and subjected to immunoprecipitation applying a Flag-specific antibody. The immunoblots were analyzed with HA-specific (detection of ubiquitin) or Flag-specific (detection of STAT3) antibody. Protein levels in the extracts (Input) used for IP (bottom) were also assessed.
Article Snippet: For STAT3 overexpression, the control (pEGFP-C1) or the RFP-STAT3 (
Techniques: Expressing, Western Blot, Immunoprecipitation