mouse anti mglur2 mab (Santa Cruz Biotechnology)
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Mouse Anti Mglur2 Mab, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 92/100, based on 17 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mouse+anti+mglur2+antibody/mGluR-2+Antibody/pmc11222159-203-0-8
Average 92 stars, based on 17 article reviews
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1) Product Images from "Influenza virus uses mGluR2 as an endocytic receptor to enter cells"
Article Title: Influenza virus uses mGluR2 as an endocytic receptor to enter cells
Journal: Nature Microbiology
doi: 10.1038/s41564-024-01713-x
Figure Legend Snippet: a , Effect of seven different membrane proteins that interact with KCa1.1 on influenza virus replication evaluated using an RNAi assay. b , mGluR2 knockdown reduced the internalization of H1N1 virus into A549 cells. c , mGluR2 knockdown reduced the internalization of H1N1 virus into A549 cells, as confirmed using a microscopy-based assay. Cell nucleus, blue; viral HA, green. d , H1N1 virus replication in A549 cells with different treatments. e , Interaction of mGluR2 and KCa1.1 confirmed by co-immunoprecipitation with agarose beads coupled with anti-Flag antibodies. f , Co-overexpression of KCa1.1 and mGluR2 increased H1N1 virus internalization. g , KCa1.1 did not internalize with H1N1 virus into A549 cells. Cell nucleus, blue; KCa1.1, green. h , mGluR2 internalized with H1N1 virus into A549 cells. Cell nucleus, blue; mGluR2, green. i , KCa1.1 knockdown prevented internalization of mGluR2 with influenza virus into A549 cells. Cell nucleus, blue; mGluR2, green. The microscopy-based assays shown in c , g , h and i were performed under unpermeabilized conditions. The solid line represents median and dashed lines represent quartiles of the data in the violin graphs of c and g – i . The images in c , e , g , h and i are representative of three independent experiments. Error bar in panels b , d and f indicates the standard deviation. The data shown in a – d and f – i are means ± s.d. ( n = 3 biologically independent experiments). Statistical analysis was performed using the unpaired, two-tailed Student’s t -test; NS, not significant. * P < 0.05; ** P < 0.01; *** P < 0.001; **** P < 0.0001. Exact P values are available in the Source Data.
Techniques Used: Membrane, Virus, RNAi Assay, Knockdown, Microscopy, Immunoprecipitation, Over Expression, Standard Deviation, Two Tailed Test
Figure Legend Snippet: a , Knockdown of CLTC significantly prevented mGluR2 internalization in H1N1-virus-internalized A549 cells. Cell nucleus, blue; mGluR2, green. b , Direct interaction of mGluR2 and HA shown using a pull-down assay with the agarose beads coupled with anti-Flag antibodies. c , Co-localization of mGluR2 and HA confirmed using a STED super-resolution microscopy assay. Cell nucleus, blue; mGluR2, red; and viral HA, green. d , mGluR2 molecules detected on the cell membrane where influenza virus attached, on the membrane of different stages of CCPs of influenza virus and on the membrane of matured CCVs of influenza virus by means of immunoelectron microscopy in mGluR2-overexpressing A549 cells. Green arrow, mGluR2; red arrow, influenza virus. Scale bar, 100 nm. e , g , mGluR2–GST ( e ) or mGluR2–ma ( g ) did not affect the viability of A549 cells. f , h , mGluR2–GST ( f ) or mGluR2–ma ( h ) treatment significantly reduced H1N1 virus replication but did not reduce adenovirus type 5 replication in A549 cells. i , Internalization of transferrin was affected by chlorpromazine (a CME inhibitor) but not by mGluR2-GST or mGluR2-ma. The microscopy-based assay shown in a and i was performed under unpermeabilized conditions and that shown in c was performed under permeabilized conditions. The solid line represents median and dashed lines represent quartiles of the data in the violin graphs of a and i . The images in a – d and i are representative of three independent experiments. Error bar in panels e – h indicates the standard deviation. The data shown in a and c – i are means ± s.d. ( n = 3 biologically independent experiments). Statistical analysis was performed using the unpaired, two-tailed Student’s t -test. NS, not significant. * P < 0.05; *** P < 0.001; **** P < 0.0001. Exact P values are available in Source Data.
Techniques Used: Knockdown, Virus, Pull Down Assay, Super-Resolution Microscopy, Membrane, Immuno-Electron Microscopy, Microscopy, Standard Deviation, Two Tailed Test
Figure Legend Snippet: a , Adenovirus type 5 replication was significantly reduced in CLTC-knockdown A549 cells but not in mGluR2-knockdown A549 cells. Error bar in panels a indicates the standard deviation. The data shown in panels a is means ± s.d. (n = 3 biologically independent experiments). Statistical analysis was performed by using the unpaired, two-tailed Student’s t-test, ns, not significant, *** P < 0.001. Exact P values are available in Source Data. b , Formation of adenovirus type 5 CCPs was reduced in KCa1.1-knockdown or chlorpromazine-treated A549 cells but not in mGluR2-knockdown A549 cells. Green arrow, adenovirus type 5 CCPs; red arrow, attached adenovirus type 5. Scale bar, 200 nm. The images in b are representative of three independent experiments.
Techniques Used: Knockdown, Standard Deviation, Two Tailed Test
Figure Legend Snippet: a , KCa1.1-knockdown, cyto D or paxilline treatment significantly reduced F-actin polymerization in H1N1-virus-internalized A549 cells. Cell nucleus, blue; phalloidin, green. b , Cyto D treatment or KCa1.1 knockdown prevented the influenza-virus-associated internalization of mGluR2 into A549 cells. Cell nucleus, blue; mGluR2, red. c , Cyto D or KCa1.1-knockdown treatment significantly reduced the internalization of H1N1 virus into A549 cells. d , KCa1.1 or mGluR2 knockdown and chlorpromazine treatment reduced the formation of CCPs of influenza virus in A549 cells. Green arrow, influenza virus CCP; red arrows, influenza virus attached. Scale bar, 200 nm. e , Model of the roles of mGluR2 and KCa1.1 in the CME of influenza virus. The microscopy-based assays shown in a and b were performed under unpermeabilized conditions. The solid line represents median and dashed lines represent quartiles of the data in the violin graphs of a and b . The images in a , b and d are representative of three independent experiments. Error bar in panels c indicates the standard deviation. The data shown in a – c are means ± s.d. ( n = 3 biologically independent experiments). Statistical analysis was performed using the unpaired, two-tailed Student’s t -test. NS, not significant. * P < 0.05; **** P < 0.0001. Exact P values are available in Source Data.
Techniques Used: Knockdown, Virus, Microscopy, Standard Deviation, Two Tailed Test
Figure Legend Snippet: a and b , Replication of H5N6 ( a ) and H7N9 ( b ) was significantly impaired in mGluR2-silenced A549 cells. c and d , Internalization of H5N6 ( c ) and H7N9 ( d ) viruses in mGluR2-knockdown A549 cells was significantly lower than that for control cells. e , Interaction of H5 HA and mGluR2 demonstrated by co-immunoprecipitation with the anti-Flag antibody coupled agarose beads. f , Interaction of H7 HA and mGluR2 demonstrated by co-immunoprecipitation with the anti-Flag antibody coupled agarose beads. g , Soluble protein mGluR2-GST treatment significantly reduced H5N6 virus replication in A549 cells. h , Soluble protein mGluR2-GST treatment significantly reduced H7N9 virus replication in A549 cells. i , mGluR2-ma treatment significantly reduced H5N6 virus replication in A549 cells. j , mGluR2-ma treatment significantly reduced H7N9 virus replication in A549 cells. The images in i and j are representative of three independent experiments. Error bar in panels a – d and g – j indicates the standard deviation. The data shown in panels a – d and g – j are means ± s.d. (n = 3 biologically independent experiments). Statistical analysis was performed by using the unpaired, two-tailed Student’s t-test, * P < 0.05, ** P < 0.01, *** P < 0.001. Exact P values are available in Source Data.
Techniques Used: Knockdown, Control, Immunoprecipitation, Virus, Standard Deviation, Two Tailed Test
Figure Legend Snippet: a – i , Groups of 16 wild-type C57BL/6J mice and mGluR2 − / − mice were intranasally inoculated with 10 MLD 50 of H1N1 virus ( a , b , c ), H5N6 virus ( d , e , f ) or H7N9 virus ( g , h , i ). a , d , g , Three mice in each group were euthanized on days 3 and 5 p.i., respectively, and their organs indicated were collected for virus titration in cells. b , c,e , f , h , i , The remaining 10 mice in each group were evaluated for body weight change ( b , e , h ) and survival ( c , f , i ) for 2 weeks. Error bar in panels a , b , d , e , g and h indicates the standard deviation. Data in a , d and g are means ± s.d. Statistical analysis was performed using the unpaired, two-tailed Student’s t -test. The log-rank (Mantel–Cox) test was used to analyse the statistical difference in survival rates between the wild-type and mGluR2 −/ − mice. * P < 0.05; ** P < 0.01; *** P < 0.001; **** P < 0.0001. PFU, plaque-forming unit; EID 50 , 50% egg infectious dose. Exact P values are available in Source Data.
Techniques Used: Virus, Titration, Standard Deviation, Two Tailed Test
Figure Legend Snippet: Viral antigen in the lungs of wild-type and mGluR2 -/- mice that were euthanized on day 3 p.i. intranasally infected with 10 MLD 50 of H1N1 virus ( a ), H5N6 virus ( b ), or H7N9 virus ( c ) were detected by means of immunohistochemical staining. Scale bar, 500 μm. The images in a – c are representative of three independent experiments.
Techniques Used: Infection, Virus, Immunohistochemical staining, Staining
Figure Legend Snippet: a , Schematic representation of glycosylation mutation sites in the ectodomain of mGluR2. b and c , Interaction between viral HA and mGluR2 or mGluR2-mutant was analyzed by using co-immunoprecipitation ( b ) and pull-down ( c ) with the anti-Flag antibody coupled agarose beads. d , Overexpression of pmGluR2-mutant restored influenza virus infection of mGluR2-knockdown A549 cells but not fully. e and f , Abundance of mGluR2 and mGluR2-mutant in whole cells and on the plasma membrane confirmed by western blotting ( e ) and flow cytometry ( f ). Control loadings in panel e are run on different gels, the samples derive from the same experiment and that blots were processed in parallel. The images in b , c , and e are representative of three independent experiments. Error bar in panels d and f indicates the standard deviation. The data shown in panels d – f are means ± s.d. (n = 3 biologically independent experiments). Statistical analysis was performed by using the unpaired, two-tailed Student’s t-test, ns, not significant, * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001. Exact P values are available in Source Data.
Techniques Used: Glycoproteomics, Mutagenesis, Immunoprecipitation, Over Expression, Virus, Infection, Knockdown, Clinical Proteomics, Membrane, Western Blot, Flow Cytometry, Control, Standard Deviation, Two Tailed Test
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