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stx 8  (Santa Cruz Biotechnology)


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    Structured Review

    Santa Cruz Biotechnology stx 8
    Stx 8, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 90/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/syntaxin/Syntaxin+8+Antibody/pm28844710-73-64-73
    Average 90 stars, based on 5 article reviews
    stx 8 - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Transduction:

    Article Title: Amisyn, a Novel Syntaxin-binding Protein That May Regulate SNARE Complex Assembly
    Article Snippet: .. Other antibodies used were anti- syntaxin 1 (HPC1) (31); syntaxin 4 (Transduction Laboratories); syntaxin 8 (32); syntaxin 13 (15G2) (33); n-sec1 (20A74) (34); SNAP-25 N terminus (18); VAMP2 (35); VAMP4 (36); and Myc tag (9E10; Santa Cruz Biotechnology) (37). ..

    other:

    Article Title: Signal Peptide Peptidase‐Like 2c (SPPL2c) impairs vesicular transport and cleavage of SNARE proteins
    Article Snippet: Other antibodies used in this study were obtained from commercial sources: anti‐Syntaxin 5 (mIgG1, clone B‐8, sc‐365124, Santa Cruz, Dallas, USA), anti‐Syntaxin 6 (rabbit mAb, C34B2, Cell Signaling, Danvers, USA), anti‐Syntaxin 8 (mIgG1, clone A‐9, sc‐376521, Santa Cruz, Dallas, USA), anti‐Syntaxin 18 (mIgG2b, clone 10, sc‐293067, Santa Cruz, Dallas, USA), anti‐VAPA (rabbit mAb, ab181067, Abcam, Cambridge, UK), anti‐VAPB (rabbit pAb, ab103638, Abcam, Cambridge, UK), anti‐VAMP8 (rabbit mAb, ab76021, Abcam, Cambridge, UK), anti‐GOSR2 (mIgG1, clone 4HAD6, Thermo Fisher, Waltham, USA), anti‐Nicastrin (rabbit pAb, N1660, Sigma‐Aldrich, St. Louis, USA), anti‐hLAMP2 (mouse, mAb, H4B4, Developmental Studies Hybridoma Bank, Iowa, USA), anti‐GnTV (mouse mIgG2A, clone 706824, R&D Systems, Minneapolis, USA), anti‐EXTL3 (mouse, mAb, G‐5, Santa Cruz, Dallas, USA), anti‐B4GALT1 (mouse, mIgG2b, MAB 3609, R&D Minnesota, USA), anti‐OGFOD3 (goat, pAb, F‐19, Santa Cruz, Dallas, USA), anti‐V5 (mIgG2A, clone R960‐25, Life Technologies, Carlsbad, USA), anti‐Calnexin (rabbit pAb, Enzo Life Sciences, Farmingdale, USA), anti‐GM130 (rabbit mAb, EP892Y, ab52649, Abcam, Cambridge, UK), anti‐Giantin (mIgG1, ALX‐804‐600, Enzo Life Sciences, Farmingdale, USA), anti‐GRP78 BiP (rabbit pAb, ab21685, Abcam, Cambridge, UK), and anti‐TGN46 (sheep, pAb, AP32693PU, Acris, Maryland, USA).

    Control:

    Article Title: Syntaxin 8 Regulates Platelet Dense Granule Secretion, Aggregation, and Thrombus Stability
    Article Snippet: .. Despite using four different STX8 antibodies in this project (Synaptic Systems polyclonal rabbit anti-STX8 (number 110-083), Santa Cruz Biotechnology monoclonal mouse anti-STX8 (48) (sc136092), in-house rabbit polyclonal anti-STX8 antibody developed at the University of Bielefeld, and R&D Systems sheep polyclonal anti-STX8 antibody (AF5448)) we did not manage to immunoprecipitate STX8 in this project to provide the reciprocal control (data not shown). ..

    Article Title: Syntaxin 8 Regulates Platelet Dense Granule Secretion, Aggregation, and Thrombus Stability
    Article Snippet: .. Despite using four different STX8 antibodies in this project (Synaptic Systems polyclonal rabbit anti-STX8 (number 110-083), Santa Cruz Biotechnology monoclonal mouse anti-STX8 ( ) (sc-136092), in-house rabbit polyclonal anti-STX8 antibody developed at the University of Bielefeld, and R&D Systems sheep polyclonal anti-STX8 antibody (AF5448)) we did not manage to immunoprecipitate STX8 in this project to provide the reciprocal control (data not shown). ..

    Protein Extraction:

    Article Title: Induction of Plac8 promotes pro-survival function of autophagy in cadmium-induced prostate carcinogenesis.
    Article Snippet: Upon sequencing completion, the resulting FastQ files were created on the Illumina BaseSpace server. .. Protein extraction and western blotting RWPE-1 and CTPE cells were seeded in 6-well plates and incubated for 24 h and then treated with cadmium (10 mM) for up to 72 h. Western blotting was performed using specific antibodies against: Atg3, Atg7, Atg12, LC3A, LC3B (Autophagy antibody sampler kit #4445, Cell Signaling, Danvers, MA), BAX, BCL-2, Plac8, Lamp-1, pAKTS473, p65, and cleaved PARP (Cell Signaling) STX-8, STX-17 (EMD Millipore, Norwood, OH) GAPDH and b-actin (Santa Cruz Biotechnology, Dallas, TX). ..

    Western Blot:

    Article Title: Induction of Plac8 promotes pro-survival function of autophagy in cadmium-induced prostate carcinogenesis.
    Article Snippet: Upon sequencing completion, the resulting FastQ files were created on the Illumina BaseSpace server. .. Protein extraction and western blotting RWPE-1 and CTPE cells were seeded in 6-well plates and incubated for 24 h and then treated with cadmium (10 mM) for up to 72 h. Western blotting was performed using specific antibodies against: Atg3, Atg7, Atg12, LC3A, LC3B (Autophagy antibody sampler kit #4445, Cell Signaling, Danvers, MA), BAX, BCL-2, Plac8, Lamp-1, pAKTS473, p65, and cleaved PARP (Cell Signaling) STX-8, STX-17 (EMD Millipore, Norwood, OH) GAPDH and b-actin (Santa Cruz Biotechnology, Dallas, TX). ..

    Incubation:

    Article Title: Induction of Plac8 promotes pro-survival function of autophagy in cadmium-induced prostate carcinogenesis.
    Article Snippet: Upon sequencing completion, the resulting FastQ files were created on the Illumina BaseSpace server. .. Protein extraction and western blotting RWPE-1 and CTPE cells were seeded in 6-well plates and incubated for 24 h and then treated with cadmium (10 mM) for up to 72 h. Western blotting was performed using specific antibodies against: Atg3, Atg7, Atg12, LC3A, LC3B (Autophagy antibody sampler kit #4445, Cell Signaling, Danvers, MA), BAX, BCL-2, Plac8, Lamp-1, pAKTS473, p65, and cleaved PARP (Cell Signaling) STX-8, STX-17 (EMD Millipore, Norwood, OH) GAPDH and b-actin (Santa Cruz Biotechnology, Dallas, TX). ..



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    N-linked glycosylation drives plasma membrane accumulation of NS3/NS3A. ( A ) The stability of NS3/NS3A WT and NS3/NS3A N150Q proteins was examined in both transfected (top panels) and BTV-20-infected cells (bottom panels; MOI = 10). For transfection assays, HEK-293T cells were transfected with plasmids expressing NS3/NS3A WT or the N150Q mutant and treated with cycloheximide (CHX; 100 μg/mL) at 18 h post-transfection (designated as 0 h post-CHX treatment) to block de novo protein synthesis. For infection assays, MDOK cells were infected with BTV-20 WT or BTV-20 N150Q and treated with CHX (100 μg/mL) at 10 h post-infection (designated as 0 h post-CHX treatment). Cells were harvested at the indicated time points and analyzed by Western blotting. ( B ) Quantification of NS3/NS3A protein levels shown in panel A was performed by ImageJ densitometric analysis. Protein levels at each time point were normalized to the corresponding 0 h post-CHX treatment (18 h post-transfection or 10 h post-infection, respectively). ( C ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with ER marker anti-calnexin (green) or Golgi marker anti-syntaxin 6 (green). Fluorescence distribution was evaluated using line-scan intensity profiles. Scale bar, 5 µm. ( D ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with plasma membrane marker WGA-Alexa Fluor 488 (green). Line-scan intensity profiles are shown. Scale bar, 5 µm. ( E ) Plasma membrane isolation of HEK-293T cells transfected with NS3/NS3A WT or N150Q mutant, followed by Western blot analysis. PM (plasma membrane fraction); NPM (non-plasma membrane fraction); Total (plasma membrane fraction + non-plasma membrane fraction). ( F ) Quantification of NS3/NS3A at the plasma membrane fraction was analyzed by Image J from panel E (* P < 0.05, two-tailed unpaired t-test). ( G ) Confocal imaging of HeLa cells co-transfected with NS3/NS3A (WT or N150Q, red) and VP2 (green) or VP5 (green), showing their subcellular colocalization. Colocalization was assessed by line-scan intensity profiles.
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    Image Search Results


    N-linked glycosylation drives plasma membrane accumulation of NS3/NS3A. ( A ) The stability of NS3/NS3A WT and NS3/NS3A N150Q proteins was examined in both transfected (top panels) and BTV-20-infected cells (bottom panels; MOI = 10). For transfection assays, HEK-293T cells were transfected with plasmids expressing NS3/NS3A WT or the N150Q mutant and treated with cycloheximide (CHX; 100 μg/mL) at 18 h post-transfection (designated as 0 h post-CHX treatment) to block de novo protein synthesis. For infection assays, MDOK cells were infected with BTV-20 WT or BTV-20 N150Q and treated with CHX (100 μg/mL) at 10 h post-infection (designated as 0 h post-CHX treatment). Cells were harvested at the indicated time points and analyzed by Western blotting. ( B ) Quantification of NS3/NS3A protein levels shown in panel A was performed by ImageJ densitometric analysis. Protein levels at each time point were normalized to the corresponding 0 h post-CHX treatment (18 h post-transfection or 10 h post-infection, respectively). ( C ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with ER marker anti-calnexin (green) or Golgi marker anti-syntaxin 6 (green). Fluorescence distribution was evaluated using line-scan intensity profiles. Scale bar, 5 µm. ( D ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with plasma membrane marker WGA-Alexa Fluor 488 (green). Line-scan intensity profiles are shown. Scale bar, 5 µm. ( E ) Plasma membrane isolation of HEK-293T cells transfected with NS3/NS3A WT or N150Q mutant, followed by Western blot analysis. PM (plasma membrane fraction); NPM (non-plasma membrane fraction); Total (plasma membrane fraction + non-plasma membrane fraction). ( F ) Quantification of NS3/NS3A at the plasma membrane fraction was analyzed by Image J from panel E (* P < 0.05, two-tailed unpaired t-test). ( G ) Confocal imaging of HeLa cells co-transfected with NS3/NS3A (WT or N150Q, red) and VP2 (green) or VP5 (green), showing their subcellular colocalization. Colocalization was assessed by line-scan intensity profiles.

    Journal: Journal of Virology

    Article Title: Glycosylated NS3/NS3A protein of bluetongue virus facilitates efficient viral egress via lipid raft anchoring

    doi: 10.1128/jvi.02144-25

    Figure Lengend Snippet: N-linked glycosylation drives plasma membrane accumulation of NS3/NS3A. ( A ) The stability of NS3/NS3A WT and NS3/NS3A N150Q proteins was examined in both transfected (top panels) and BTV-20-infected cells (bottom panels; MOI = 10). For transfection assays, HEK-293T cells were transfected with plasmids expressing NS3/NS3A WT or the N150Q mutant and treated with cycloheximide (CHX; 100 μg/mL) at 18 h post-transfection (designated as 0 h post-CHX treatment) to block de novo protein synthesis. For infection assays, MDOK cells were infected with BTV-20 WT or BTV-20 N150Q and treated with CHX (100 μg/mL) at 10 h post-infection (designated as 0 h post-CHX treatment). Cells were harvested at the indicated time points and analyzed by Western blotting. ( B ) Quantification of NS3/NS3A protein levels shown in panel A was performed by ImageJ densitometric analysis. Protein levels at each time point were normalized to the corresponding 0 h post-CHX treatment (18 h post-transfection or 10 h post-infection, respectively). ( C ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with ER marker anti-calnexin (green) or Golgi marker anti-syntaxin 6 (green). Fluorescence distribution was evaluated using line-scan intensity profiles. Scale bar, 5 µm. ( D ) Subcellular localization of NS3/NS3A in MDOK cells infected with BTV-20 WT or BTV-20 N150Q (MOI = 5, 12 h.p.i.). NS3/NS3A (red) was co-stained with plasma membrane marker WGA-Alexa Fluor 488 (green). Line-scan intensity profiles are shown. Scale bar, 5 µm. ( E ) Plasma membrane isolation of HEK-293T cells transfected with NS3/NS3A WT or N150Q mutant, followed by Western blot analysis. PM (plasma membrane fraction); NPM (non-plasma membrane fraction); Total (plasma membrane fraction + non-plasma membrane fraction). ( F ) Quantification of NS3/NS3A at the plasma membrane fraction was analyzed by Image J from panel E (* P < 0.05, two-tailed unpaired t-test). ( G ) Confocal imaging of HeLa cells co-transfected with NS3/NS3A (WT or N150Q, red) and VP2 (green) or VP5 (green), showing their subcellular colocalization. Colocalization was assessed by line-scan intensity profiles.

    Article Snippet: Commercial antibodies used in this study included anti-FLAG (DYKDDDDK) monoclonal antibody (1:1,000 for immunofluorescence assay [IFA], 1:10,000 for western blotting [WB]; 66008-4-Ig, Proteintech), anti-HA polyclonal antibody (1:100 for IFA, 1:1,000 for WB; 51064-2-AP, Proteintech), anti-β-actin monoclonal antibody (1:10,000 for WB; 66009-1-Ig, Proteintech), anti-Calnexin polyclonal antibody (1:200 for IFA; 10427-2-AP, Proteintech), anti-Syntaxin 6 polyclonal antibody (1:200 for IFA; 10841-1-AP, Proteintech), anti-Flotillin 1 monoclonal antibody (1:100 for IFA; 67968-1-Ig, Proteintech), and anti-Filamin A (FLNA) monoclonal antibody (1:1,000 for WB; 67133-1-Ig, Proteintech).

    Techniques: Glycoproteomics, Clinical Proteomics, Membrane, Transfection, Infection, Expressing, Mutagenesis, Blocking Assay, Western Blot, Staining, Marker, Fluorescence, Isolation, Two Tailed Test, Imaging