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Image Search Results
Journal: Cell metabolism
Article Title: MYC and MCL1 cooperatively promote chemotherapy-resistant breast cancer stem cells through regulation of mitochondrial oxidative phosphorylation
doi: 10.1016/j.cmet.2017.09.009
Figure Lengend Snippet: (A) Plot of genetic alterations as determined by targeted NGS in tumor DNA. X represents no biopsy was available. (B) ALDH+ cells were sorted and then subjected to intracellular labeling with MYC and MCL1 antibodies. (C) Cells were cultured in adherent conditions (ADH) or as mammospheres (MS) for 7 days. Cell lysates were subjected to immunoblot analysis with the indicated antibodies. (D) Relative levels of MYC and MCL1 protein in lysates from TNBC cell lines and quantified by Image J (*p<0.05). (E) MYC and MCL1 protein levels were plotted against the ratio of CD44:CD24 mRNA in the TNBC cell lines (Pearson’s correlation). (F) Levels of MYC mRNA in breast cancer biopsies before chemotherapy (Pre-T) and after chemotherapy (Post-T) were measured by NanoString analysis (n=17; paired t test, *p<0.005). (G) Left panel: H score of IHC analysis of MCL1 from tumor biopsies before chemotherapy and after chemotherapy (n=7; paired t test, *p<0.05). Right panel: Representative MCL1 IHC. (H) MYC, MCL1 and actin immunoblot analyses of lysates from paclitaxel resistant (PCTR) and parental (PAR) cells. Data are represented as mean ± SD.
Article Snippet: Control, MYC and
Techniques: Labeling, Cell Culture, Western Blot
Journal: Cell metabolism
Article Title: MYC and MCL1 cooperatively promote chemotherapy-resistant breast cancer stem cells through regulation of mitochondrial oxidative phosphorylation
doi: 10.1016/j.cmet.2017.09.009
Figure Lengend Snippet: (A, C) SUM159PT and MDA-MB-436 cells were transfected with two different MYC or MCL1 siRNAs (A). MDA-MB-468 cells stably transduced with pINDUCER20-MYC (expression induced by 100 ng/mL DOX) or pLX302-GPF or -MCL1 were subjected to mammosphere assay (C). The indicated cells were seeded in mammosphere assays for 7 days (* p<0.05, **p<0.005); original magnification, x100. (B, D) ALDH+ or CD44hi/CD24low fractions in cells manipulated as in A and C were analyzed by FACS (*p<0.005, **p<0.0005). (E, F) SUM159PT cells stably transduced with MYC or MCL1 shRNA were serially diluted and then injected subcutaneously (s.c.) in the lateral dorsum of athymic female mice for ELDA. Data are represented as mean ± SD.
Article Snippet: Control, MYC and
Techniques: Transfection, Stable Transfection, Transduction, Expressing, shRNA, Injection
Journal: Cell metabolism
Article Title: MYC and MCL1 cooperatively promote chemotherapy-resistant breast cancer stem cells through regulation of mitochondrial oxidative phosphorylation
doi: 10.1016/j.cmet.2017.09.009
Figure Lengend Snippet: (A–C) OCRs were determined by Seahorse XFe96 extracellular flux analyzer (A). Cells were stained with Mitotracker Red CMXRos and then were analyzed by flow cytometry (B; *p<0.0005) ROS levels were determined by ROS-Glo (C; *p<0.05, **p<0.005). (D) Cells were transduced with MCL1 siRNA and then prepared for transmission electron microscope imaging. Yellow dots outline each individual mitochondrion. (E) Cells transduced with MCL1 were seeded in mammosphere assays and treated with DMSO or 0.1 μM oligomycin A for 7 days (*p<0.05). (F) Cells were transduced with MCL1 siRNA and then lysed and subjected to LC-MS/MS. TCA cycle metabolites were analyzed as described in Methods (Multiple t-tests, *q<0.05, **q<0.0005). (G–I) OCRs and the proportion of CD44hi/CD24low cells were determined by Seahorse XFe96 extracellular flux analyzer (G) and flow cytometry (H), respectively (*p<0.005, **p<0.0005). Cells were seeded in mammosphere assays for 7 days (I; *p<0.05). (J) Cells were transduced with MCL1 siRNA or treated with VU0659158 for 4 days and then seeded in mammosphere assays for 7 days (*p<0.05, ** p <0.005). Data are represented as mean ± SD.
Article Snippet: Control, MYC and
Techniques: Staining, Flow Cytometry, Transduction, Transmission Assay, Microscopy, Imaging, Liquid Chromatography with Mass Spectroscopy
Journal: Cell metabolism
Article Title: MYC and MCL1 cooperatively promote chemotherapy-resistant breast cancer stem cells through regulation of mitochondrial oxidative phosphorylation
doi: 10.1016/j.cmet.2017.09.009
Figure Lengend Snippet: (A, C) Cells were transduced with MYC and/or MCL1. After 4 days, cells were seeded in mammosphere assays for 7 days (*p<0.05, **p<0.005, ***p<0.0005). (B, D) Proportion of ALDH+ or CD44hi/CD24low cells was determined by flow cytometry (*p<0.05, **p<0.005, ***p<0.0005). (E, F) MDA-MB-468 cells transduced with pLX302-GFP or -MCL1 were re-transduced with pINDUCER20-MYC. Cells were then seeded in a mammosphere assay for 7 days ± 100 ng/mL DOX (E). Proportion of CD44hi/CD24low cells was determined by flow cytometry after 4 days of treatment with DOX (F). (G) OCRs were determined by Seahorse XFe96 extracellular flux analyzer. (H) ROS levels were examined by ROS-Glo (*p<0.05, **p<0.005, ***p<0.0005). (I) GSVA score was examined with a gene set [Reactome_Pyruvate metabolism and Citric Acid (TCA) cycle] in breast cancers in TCGA (*p<0.0005). Data are represented as mean ± SD.
Article Snippet: Control, MYC and
Techniques: Transduction, Flow Cytometry