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anti vap b antibody  (Proteintech)


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    Structured Review

    Proteintech anti vap b antibody
    Anti Vap B Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 95/100, based on 69 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/vap+b/VAPB+Antibody/pm40883511-371-15-17
    Average 95 stars, based on 69 article reviews
    anti vap b antibody - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    other:

    Article Title: Peri-mitochondrial actin filaments inhibit Parkin assembly by disrupting ER-mitochondria contacts
    Article Snippet: VAP-B , Proteintech , Cat# 66191-1-Ig.

    Article Title: Peri-mitochondrial actin filaments inhibit Parkin assembly by disrupting ER-mitochondria contacts
    Article Snippet: VAP-B , Proteintech , Cat# 14477-1-AP.

    Proximity Ligation Assay:

    Article Title: Restructured membrane contacts rewire organelles for human cytomegalovirus infection
    Article Snippet: .. Host protein antibodies used: PTPIP51 (also known as RMDN3, 1:1000 for IF and PLA, 1:250 for WB, Sigma HPA009975); VAP-B (1:200 for IF and PLA, ProteinTech 66191-1-Ig); STING (1:400 for IF, Abcam Ab198950); ACBD5 (1:500 for IF, 1:150 for WB, Sigma HPA012145); PEX14 (1:500 for IF, Abcam ab183885); IRF3 phospho-S386 (1:1000 for WB, Abcam ab76493); TBK1 phospho-S172 (1:1000 for WB, Cell Signaling 5483 S); IRF3 (1:1000 for WB, Abcam ab68481); TBK1 (1:500 for WB, Cell Signaling 3504 S); PARP (1:500 for WB, Cell Signaling 9524); α-tubulin (1:5000 for WB, Sigma Aldrich T6199); GAPDH (1:4000 for WB, Cell Signaling D16H11-5174S); STING (Alexa Fluor 488 conjugate, 1:400 for IF, Abcam ab198950). ..

    Western Blot:

    Article Title: Restructured membrane contacts rewire organelles for human cytomegalovirus infection
    Article Snippet: .. Host protein antibodies used: PTPIP51 (also known as RMDN3, 1:1000 for IF and PLA, 1:250 for WB, Sigma HPA009975); VAP-B (1:200 for IF and PLA, ProteinTech 66191-1-Ig); STING (1:400 for IF, Abcam Ab198950); ACBD5 (1:500 for IF, 1:150 for WB, Sigma HPA012145); PEX14 (1:500 for IF, Abcam ab183885); IRF3 phospho-S386 (1:1000 for WB, Abcam ab76493); TBK1 phospho-S172 (1:1000 for WB, Cell Signaling 5483 S); IRF3 (1:1000 for WB, Abcam ab68481); TBK1 (1:500 for WB, Cell Signaling 3504 S); PARP (1:500 for WB, Cell Signaling 9524); α-tubulin (1:5000 for WB, Sigma Aldrich T6199); GAPDH (1:4000 for WB, Cell Signaling D16H11-5174S); STING (Alexa Fluor 488 conjugate, 1:400 for IF, Abcam ab198950). ..



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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    Proteintech anti vap b antibody
    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, <t>GFP-VAP-B,</t> GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.
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    A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, GFP-VAP-B, GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.

    Journal: bioRxiv

    Article Title: Selective MOSPD2-STARD3 interaction at ER contact sites governs late endosome/lysosome dynamics and cholesterol homeostasis

    doi: 10.64898/2026.03.30.714413

    Figure Lengend Snippet: A-B: Immunoprecipitation (anti-Flag) experiments between Flag-STARD3 and GFP-VAP-A, GFP-VAP-B, GFP-MOSPD2, GFP-MOSPD2 RD/LD, and GFP-VAP-A KD/MD (B) in HeLa cells. Approximatively 5 µg of total protein extract was analyzed by Western blot using anti-GFP, anti-STARD3, and anti-GAPDH antibodies. Immunoprecipitated proteins were analyzed using anti-GFP and anti-STARD3 antibodies. C: Immunoprecipitation between endogenous STARD3 and VAP-A, VAP-B and MOSPD2 in HCC1954 cells. Immunoprecipitation was performed using control IgG or anti-STARD3 antibodies in triplicate. Total protein extracts and immunoprecipitated proteins were analyzed by Western blot using anti-MOSPD2, anti-VAP-A, anti-VAP-B, anti-STARD3, and anti-GAPDH antibodies. *: aspecific. D: Principle of the native Holdup assay. Total protein extracts (a) are incubated with streptavidin resin saturated with a biotinylated MSP domain or control resin (b). After reaching equilibrium, unbound proteins are filtered out and quantified by Western blot. Binding intensity = 1 – (C Unbound / C total ). E: Coomassie blue staining of recombinant proteins used for native Holdup experiments: MBP alone or fused to the MSP domains of VAP-A, VAP-B or MOSPD2 (WT and RD/LD mutant), tagged with a 6 His for purification and biotinylated thanks to an AviTag. A total of 25 pmol of each protein was loaded. F: Native Holdup experiments quantifying the interaction between the recombinant MSP domains of VAP-A, VAP-B, MOSPD2, and MOSPD2 RD/LD and endogenous STARD3. Left: western blot analysis of the unbound prey protein (STARD3) in HCC1954 protein extracts after incubation with increasing amounts of the recombinant MSP domains. Right: Binding intensity between the MSP domains and the prey protein (STARD3). Binding curves were fitted using a Hill equation (mean ± SEM from 2 technical replicates), and apparent affinities ( K app ) and maximal binding intensities ( B max ) were calculated (± SD). G: FRAP experiment in HeLa cells co-expressing mCherry-STARD3 and either GFP-VAP-A, GFP-VAP-B, or GFP-MOSPD2. a: images showing STARD3-positive LE/Lys in close apposition to ER-localized GFP-MOSPD2 (top), GFP-VAP-A (middle), or GFP-VAP-B (bottom). Left: colocalization of mCherry-STARD3 (magenta) and GFP (green) pre-bleach. GFP signal (gray) displayed sequentially from left to right: pre-bleach, immediately post-bleach, 3 seconds post-bleach, and 20 s post-bleach. b: Quantification of relative GFP-signal intensity in the bleached ROI during the 2 seconds before bleaching, and the 21 seconds following bleaching in cells expressing GFP-VAP-A (blue curve), GFP-VAP-B (green curve), and GFP-MOSPD2 (red curve). The gray curve represents the GFP signal in the absence of bleaching. Mean values and standard deviations (black bars) are shown. The calculated half-times of recovery (mean t½ ± SD) are indicated.

    Article Snippet: The pQCXIP MOSPD2 (WT; RD/LD; ΔCRAL-TRIO; ΔMSP), pQCXIP GFP-MOSPD2 (WT: Addgene #186467; RD/LD #186468), pQCXIP mScarlet-MOSPD2 (WT: Addgene #186472; RD/LD Addgene #186476; W201E: Addgene plasmid #186477; ΔMSP; ΔCRAL-TRIO mutants), GFP-VAP-A (WT: Addgene #104447; KD/MD Addgene #104449), GFP-VAP-B (Addgene plasmid #104448), EGFP-ER[TM(SAC1)] (Addgene plasmid #186475), pQCXIP mScarlet-ER [TM(SAC1)] (Addgene plasmid # 186572), Flag-STARD3, GFP-VAP-A (WT and KD/MD mutant), and GFP-VAP-B, expression vectors were previously described ( , ; ; ; ).

    Techniques: Immunoprecipitation, Western Blot, Control, Incubation, Binding Assay, Staining, Recombinant, Mutagenesis, Purification, Expressing