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Image Search Results
Journal: Genes to cells : devoted to molecular & cellular mechanisms
Article Title: MTMR4, a phosphoinositide-specific 3'-phosphatase, regulates TFEB activity and the endocytic and autophagic pathways.
doi: 10.1111/gtc.12609
Figure Lengend Snippet: FIGURE 6 MTMR4 knockdown inhibits starvation-induced increase in dephosphorylated TFEB/total TFEB ratio. (a) Phosphorylation of TFEB and other proteins and total amounts of MTMR4 and MTMR3 in control and MTMR4-depleted cells. A549 cells transfected with control- or MTMR4-siRNAs were placed in growth medium (fed) with or without 100 μM chloroquine or in HBSS for 4 hr, and subjected to western blot analyses. S6K, S6 kinase. (b) Quantified data of total TFEB protein level (sum of the dephosphorylated and phosphorylated forms of TFEB) (left), phospho-TFEB level (normalized to GAPDH) (middle) and ratio of dephosphorylated TFEB/total TFEB (right) in control and MTMR4–depleted cells. (c) Time course of starvation-induced change in phosphorylation of TFEB and S6K. A549 cells were starved by culture in HBSS for the indicated time periods and subjected to western blot analyses. Stv, starved. (d) Phosphorylation of TFEB in control and MTMR4-depleted cells under both fed and starved conditions with or without cyclosporine A treatment. Control and MTMR4-depleted A549 cells were incubated in growth medium (fed) or HBSS (starved) with or without cyclosporine-A (10 μM) for 4 hr
Article Snippet:
Techniques: Knockdown, Phospho-proteomics, Control, Transfection, Western Blot, Incubation
Journal: Genes to cells : devoted to molecular & cellular mechanisms
Article Title: MTMR4, a phosphoinositide-specific 3'-phosphatase, regulates TFEB activity and the endocytic and autophagic pathways.
doi: 10.1111/gtc.12609
Figure Lengend Snippet: FIGURE 8 PI(3)P-phosphatase MTMR4 regulates endocytic and autophagic pathways. MTMR4 is localized mainly in LEs and APs to regulate PI(3)P levels. MTMR4 regulates the fusion, fission, motility and maturation of endosomes, the autophagic pathway, and lysosomal biogenesis. MTMR4 is also required for activation of TFEB. This action of MTMR4 contributes to MTMR4 regulation of the endocytic and autophagic pathways
Article Snippet:
Techniques: Activation Assay
Journal: Biochimie
Article Title: Peptides derived from transcription factor EB bind to calcineurin at a similar region as the NFAT-type motif.
doi: 10.1016/j.biochi.2017.09.002
Figure Lengend Snippet: Fig. 1. Peptides derived from transcription factor EB bind to CN in mouse brain lysates. (A) The TFEB-YLENP peptide binds CNA in mouse brain lysates in pull-down assays. Bound CNA was visualized by western blot with monoclonal anti-CNA antibody, shown in the upper blot; the input is shown in the middle panel. The bottom blot confirms that equal amounts of GST fusion proteins were used in the reactions. (B) Alterations of the TFEB-YLENP peptide decrease the interaction between peptides and CNA in mouse brain lysates assayed by GST pull-down. (C) The TFEB-YLENP derivatives TFEB-YLENPN78V and TFEB-YLENPE77A, N78V interact more strongly with CNA. (D) Densitometric quantification of CNA bound by TFEB-YLENPE77A and TFEB-YLENPE77A, N78V and histograms showing the relative intensity units of bound CN. Data were presented as mean ± SEM (n ¼ 3), *p < 0.05; **p < 0.01 compared with the TFEB-YLENP group.
Article Snippet:
Techniques: Derivative Assay, Western Blot
Journal: Biochimie
Article Title: Peptides derived from transcription factor EB bind to calcineurin at a similar region as the NFAT-type motif.
doi: 10.1016/j.biochi.2017.09.002
Figure Lengend Snippet: Fig. 2. Peptides derived from transcription factor EB bind to purified recombinant CN. (A) The affinity of FAM-labeled TFEB-YLENP peptide for CN. (B) The affinity of FAM- labeled TFEB-YLAVP peptide for CN. CN was titrated against fixed concentrations of labeled TFEB-YLENP (40 nM) and TFEB-YLAVP (20 nM). The top panel shows the isotherm derived from the raw data, fitted to a sigmoidal dose-response curve. The bottom panel displays the raw data for thermophoresis recorded at 20 C using 20% LED power and 80% MST power. (C) Comparison of Kd values between TFEB-YLENP/CN and TFEB-YLAVP/CN from three individual experiments. The individual experimental values were showed. (D) The interaction between CN and 300 nM FAM-labeled TFEB-YLAVP measured by fluorescence polarization. (E) Complex formation between CN and 300 nM FAM-labeled TFEB-YLAVP in the presence of unlabeled NFATc1-YLAVP peptide by fluorescence polarization.
Article Snippet:
Techniques: Derivative Assay, Recombinant, Labeling, Comparison
Journal: Biochimie
Article Title: Peptides derived from transcription factor EB bind to calcineurin at a similar region as the NFAT-type motif.
doi: 10.1016/j.biochi.2017.09.002
Figure Lengend Snippet: Fig. 3. A similar binding pattern for both TFEB-YLENP and LxVP-type peptides to CN. (A and B) The distance (upper) between C-alpha atoms of the peptide and CN, and their interaction energy (lower) during the simulations. (C) The YLENP (shiny) and YLAVP (brushed) peptides bind to CN in a similar manner, as shown in the last snapshots of the simulation. Both CNA (ice blue) and CNB (orange) are shown as transparent surfaces and cartoons, whereas the LxxP peptides are drawn as sticks. (D) Binding between CN and the TFEB-YLENP peptide is weaker than that between CN and the TFEB-YLAVP peptide, as shown by the average interaction energies based on the complete trajectories.
Article Snippet:
Techniques: Binding Assay
Journal: Biochimie
Article Title: Peptides derived from transcription factor EB bind to calcineurin at a similar region as the NFAT-type motif.
doi: 10.1016/j.biochi.2017.09.002
Figure Lengend Snippet: Fig. 4. CsA bound to cyclophilin competes with activated CN for the mutant TFEB. (A) Competition for binding of CN to TFEB-YLAVP by CsA alone and by the CsA-CyP complex (20 mM and 200 nM, respectively). (B) Binding of GST-CNA and its deletion mutants to GFP-TFEB in HeLa cells. (C) TFEB bound by CNA and its mutants was measured densito- metrically, and the histograms show the relative intensity units of bound TFEB. TFEB bound by CNA is set at 100%. Data were presented as mean ± SEM (n ¼ 3), *p < 0.05 compared with CNA group. (D) Quercetin (50 mM and 100 mM) competes with binding of GFP-TFEB to GST-CNA. (E) The bar graph depicts the ratios of bound TFEB and GST-CN in the presence of quercetin as percentages of the control binding (100%). Data were presented as mean ± SEM (n ¼ 3), **p < 0.01; ***p < 0.001 compared with the control group.
Article Snippet:
Techniques: Mutagenesis, Binding Assay, Control
Journal: Biochimie
Article Title: Peptides derived from transcription factor EB bind to calcineurin at a similar region as the NFAT-type motif.
doi: 10.1016/j.biochi.2017.09.002
Figure Lengend Snippet: Fig. 5. Expression of NFATc1-YLAVP peptide blocks TFEB activation in starved HeLa cells. (A) Starvation induces nuclear translocation of GFP-TFEB. (B) NFATc1-YLAVP peptide inhibits TFEB nuclear translocation. The graph shows the percentages of TFEB translocation in starved and peptide-treated cells. Data were presented as mean ± SEM (n ¼ 3), *p < 0.05; **p < 0.01 compared with the starved group. (C) Transfection of NFATc1-YLAVP cDNA induces TFEB phosphorylation in starved HeLa cells. Empty vector cDNA and NFATc1- YLAVP cDNA were transfected into HeLa cells, and the cells were starved. The blot shows the expression of GFP-TFEB in total lysates and indicates the positions of phosphorylated and dephosphorylated proteins.
Article Snippet:
Techniques: Expressing, Activation Assay, Translocation Assay, Transfection, Phospho-proteomics, Plasmid Preparation
Journal: Cell
Article Title: Spatiotemporal Control of CNS Myelination by Oligodendrocyte Programmed Cell Death through the TFEB-PUMA Axis.
doi: 10.1016/j.cell.2018.10.044
Figure Lengend Snippet: Figure 2. Conditional Deletion of TFEB in OL Lineage Cells Causes Ectopic Myelination in the Cerebellar Molecular Layer (A and B) Genetic labeling reveals OPCs in the P14 mouse cerebellar molecular layer (red in A and B, indicated by white arrowheads). ML, molecular layer; GL, granule layer.
Article Snippet: GFP-TFEB expression construct was generated by subcloning
Techniques: Labeling
Journal: Cell
Article Title: Spatiotemporal Control of CNS Myelination by Oligodendrocyte Programmed Cell Death through the TFEB-PUMA Axis.
doi: 10.1016/j.cell.2018.10.044
Figure Lengend Snippet: Figure 4. TFEB cKO Mice Harbor Thicker Myelin Sheaths and Are Precociously Myelinated in White Matter (A and A’) Representative TEM micrographs from P21 Ctl (TFEBF/F) and TFEB cKO (Olig2-Cre; TFEBF/F) CC showing that myelinated axon density is increased in the absence of TFEB. (B) Quantification of myelinated axon number (left), total axon number (middle), and myelinated axon percentage (right) in the CC from TFEBF/F (Flox), Olig2-Cre; TFEBF/+ (Het) and Olig2-Cre; TFEBF/F (cKO) mice. (C and C’) Representative high-magnification TEM micrographs from P21 Ctl and TFEB cKO CC. (D and E) Quantification of average g-ratios of myelinated axons (E), and as a function of axon diameter (D), in P21 TFEB cKO mice (red) compared with littermate Ctls (TFEBF/F in black and Olig2-Cre; TFEBF/+ in blue). n R 180 axons from 3 animals per genotype. (F and F’) Representative high-magnification TEM micrographs from 6-month-old Ctl and TFEB cKO CC. (G and H) Quantification of average g-ratios of myelinated axons (H), and as a function of axon diameter (G), in 6-month-old TFEB cKO mice (red) as compared with littermate Ctls n R 180 axons from 3 animals per genotype. Error bars represent SEM. Scale bars: 5 mm in (A’) for (A) and (A’); and 0.5 mm in (F’) for (C)–(F’). *p < 0.05.
Article Snippet: GFP-TFEB expression construct was generated by subcloning
Techniques:
Journal: Cell
Article Title: Spatiotemporal Control of CNS Myelination by Oligodendrocyte Programmed Cell Death through the TFEB-PUMA Axis.
doi: 10.1016/j.cell.2018.10.044
Figure Lengend Snippet: Figure 6. TFEB Promotes the Expression of Subsets of ER Stress Genes and Induces the Pro-apoptotic Factor PUMA in Pre-OLs (A) Volcano plot showing differentially expressed genes in pre-OLs acutely purified from P12 TFEB cKO (Olig2-Cre; TFEBF/F) compared with those purified from littermate Ctl mice (Olig2-Cre; TFEBF/+). Each dot represents a gene. Blue color dots are genes up- or downregulated more than 2-fold. Four selected genes are denoted and highlighted in red. (B) Heatmap showing expression levels (in z scores) of genes up- or downregulated more than 2-fold in TFEB cKO pre-OLs by RNA sequencing (RNA-seq). Replicates of TFEB heterozygous Ctl cells (Het) and KO cells from distinct clusters are shown by the dendrogram. Each row corresponds to a gene, and rows are ordered by fold change values from the highest to the lowest. See Table S1 for the full gene list. (C) Gene ontology (GO) term analysis (Protein Analysis through Evolutionary Relationships [PANTHER] Overrepresentation Test) by using genes downregulated more than 2-fold as input. The top 10 most enriched biological process (BP) terms are shown. Only the narrowest term from each hierarchical group in the analysis is plotted. The full list of enriched terms can be found in Table S2. (D) qRT-PCR of PUMA(Bbc3) mRNA expression in differentiating OLs from TFEB cKO mice and littermate Ctls. n = 3 biological replicates for both genotypes and for each time points. Error bars represent SEM. *p < 0.05.
Article Snippet: GFP-TFEB expression construct was generated by subcloning
Techniques: Expressing, RNA Sequencing, Quantitative RT-PCR
Journal: Developmental cell
Article Title: Sestrin2 drives ER-phagy in response to protein misfolding.
doi: 10.1016/j.devcel.2024.07.004
Figure Lengend Snippet: Figure 4. ER storage promotes TFEB nuclear translocation via the upregulation of the leucine sensor Sestrin2 (A) Venn diagram showing that 73 genes were commonly regulated in RCS and HeLa cells upon COL2A1 R789C and COL1A2 G610C expression, respectively.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER Data visualization Biorender https://app.biorender.com/ Statistics GraphPad PRISM software https://www.graphpad.com/features Other FLAG-TFEB and GFP-TFEB plasmids Settembre et al.38 TIGEM, Pozzuoli, Italy N/A FAM134B-HA expression plasmid Khaminets et al.13 N/A Wild-type and
Techniques: Translocation Assay, Expressing
Journal: Developmental cell
Article Title: Sestrin2 drives ER-phagy in response to protein misfolding.
doi: 10.1016/j.devcel.2024.07.004
Figure Lengend Snippet: Figure 5. ER storage response activates ER-phagy via Sestrin2 induction (A) Western blot analysis of phosho-TFEB (S211) and phosho-P70S6K (T389) in WT and SESN2 KO HEK283T cells transfected with GFP-COL1A2 G610C or treated with Torin 1. FILAMIN was used as a loading control. Bar graph shows quantification of phospho-TFEB levels. Mean ± standard error of mean (SEM) of N = 3 biological replicates. Student’s unpaired t test: ****p < 0.0001.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER Data visualization Biorender https://app.biorender.com/ Statistics GraphPad PRISM software https://www.graphpad.com/features Other FLAG-TFEB and GFP-TFEB plasmids Settembre et al.38 TIGEM, Pozzuoli, Italy N/A FAM134B-HA expression plasmid Khaminets et al.13 N/A Wild-type and
Techniques: Western Blot, Transfection, Control