rabbit monoclonal anti rab9 d22a6 (Cell Signaling Technology Inc)
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Rabbit Monoclonal Anti Rab9 D22a6, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 92/100, based on 34 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/anti+rab9+antibodies/Rab9+Rabbit+mAb/pmc12588189-18-0-5
Average 92 stars, based on 34 article reviews
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Microscopy:Article Title: Unconventional secretion of misfolded proteins promotes adaptation to proteasome dysfunction in mammalian cells Article Snippet: .. For SIM microscopy, COS7 cells were permeabilized with digitonin and fixed with 2% paraformaldehyde, and stained with Article Title: Unconventional secretion of misfolded proteins promotes adaptation to proteasome dysfunction in mammalian cells. Article Snippet: To safeguard proteomic integrity, cells rely on the proteasome to degrade aberrant polypeptides, but it is unclear how cells remove defective proteins that have escaped degradation owing to proteasome insufficiency or dysfunction.. Here we report a pathway termed misfolding-associated protein secretion, which uses the endoplasmic reticulum (ER)-associated deubiquitylase USP19 to preferentially export aberrant cytosolic proteins.. Intriguingly, the catalytic domain of USP19 possesses an unprecedented chaperone activity, allowing recruitment of misfolded proteins to the ER surface for deubiquitylation. Staining:Article Title: Unconventional secretion of misfolded proteins promotes adaptation to proteasome dysfunction in mammalian cells Article Snippet: .. For SIM microscopy, COS7 cells were permeabilized with digitonin and fixed with 2% paraformaldehyde, and stained with Article Title: Unconventional secretion of misfolded proteins promotes adaptation to proteasome dysfunction in mammalian cells. Article Snippet: To safeguard proteomic integrity, cells rely on the proteasome to degrade aberrant polypeptides, but it is unclear how cells remove defective proteins that have escaped degradation owing to proteasome insufficiency or dysfunction.. Here we report a pathway termed misfolding-associated protein secretion, which uses the endoplasmic reticulum (ER)-associated deubiquitylase USP19 to preferentially export aberrant cytosolic proteins.. Intriguingly, the catalytic domain of USP19 possesses an unprecedented chaperone activity, allowing recruitment of misfolded proteins to the ER surface for deubiquitylation. |
![Mito-fisetin (mF3)-mediated changes in mitochondrial parameters (A,B) and mitophagic pathway (C) in tamoxifen-induced noncancerous and breast cancer cells. Senescent cells were treated with fisetin (F) and mito-fisetin (mF3) (1 or 5 μM) for 24 h (A,C) or 5 μM F or mF3 for 6 h (B). (A) Depolarization of the MMP (Δψ m ) was assayed using a dedicated fluorogenic probe and flow cytometry. The effects in nonsenescent proliferating cells are also shown. (B) Mitochondrial function was assayed as real-time measurements of mitochondrial oxidative phosphorylation (OXPHOS) as selected OCR parameters (pmol/min or %), namely, basal respiration, ATP production, proton leak (stimulation with oligomycin), maximal respiration (stimulation with the uncoupler FCCP), and spare respiratory capacity (stimulation with rotenone and antimycin A). Uncoupling efficiency [%] and nonmitochondrial oxygen consumption [pmol/min] are also presented. A summarizing scheme showing mF3-mediated effects on mitochondrial function is also provided. (A,B) Bars indicate SD, n = 3, *** p < 0.001, ** p < 0.01, * p < 0.05 compared to the corresponding untreated control (CTR, proliferating cells or CTR SEN, senescent cells) (ANOVA and Dunnett’s a posteriori test), ### p < 0.001, # p < 0.05 compared to fisetin treatment (F) (ANOVA and Tukey’s a posteriori test). (C) Cytoplasmic levels of selected markers of mitophagy and autophagy (PINK1, Parkin, ubiquitin, LC3B, ULK1, VPS34, beclin 1, BNIP3, and <t>Rab9)</t> were studied using dedicated antibodies, an immunostaining protocol, and imaging cytometry. Protein levels are presented as relative fluorescent units (RFU). Box and whisker plots are shown, n = 3, *** p < 0.001, ** p < 0.01, * p < 0.05 compared to the corresponding untreated proliferating control (CTR) (ANOVA and Dunnett’s a posteriori test), ∧∧∧ p < 0.001, ∧∧ p < 0.01, ∧ p < 0.05 compared to the corresponding untreated senescent control (CTR SEN) (ANOVA and Dunnett’s a posteriori test), ### p < 0.001, ## p < 0.01, # p < 0.05 compared to fisetin treatment (F) (ANOVA and Tukey’s a posteriori test).](https://pub-med-central-images-cdn.bioz.com/pub_med_central_ids_ending_with_2315/pmc11472315/pmc11472315__jm4c01664_0002.jpg)