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recombinant human bmp2 protein r d systems  (R&D Systems)


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    R&D Systems recombinant human bmp2 protein r d systems
    Recombinant Human Bmp2 Protein R D Systems, supplied by R&D Systems, used in various techniques. Bioz Stars score: 95/100, based on 218 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+bmp2+r+d+systems/Recombinant+Human+BMP-2+GMP+Protein%2C+CF/pm41932341-856-64-68
    Average 95 stars, based on 218 article reviews
    recombinant human bmp2 protein r d systems - by Bioz Stars, 2026-09
    95/100 stars

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    Recombinant:

    Article Title: Structures of TGF-β with betaglycan and signaling receptors reveal mechanisms of complex assembly and signaling
    Article Snippet: Anti-phospho-Smad2 (IF, Dilution: 1 in 500) Cell Signaling Technology Cat# 3108; RRID: AB_490941 Anti-SNAP-tag (Polyclonal, Dilution 1:1000) Invitrogen Cat# CAB4255 RRID: AB_10710011 Anti-Betaglycan (Polyclonal, Dilution 1:1000) R&D Cat#AF5034 RRID: AB_2202608 HRP-conjugated anti-rabbit secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0448 RRID: AB_2617138 HRP-conjugated anti-goat secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0449, RRID:AB_2617143 .. E. coli BL21(DE3) EMD-Milipore Cat# 69450-3 Chemicals, peptides, and recombinant proteins Alexa FluorTM 647 NHS ester ThermoFisher Scientific Cat# A20006 CF®640R Succinimide ester Biotium Cat# 92108 CF®568 Succinimide ester Biotium Cat# 92131 BG-NH2 O6-(4-Aminomethyl-benzyl)guanine AAT Bioquest Cat# 1256-AAT DAPI Sigma Cat# 10236276001 Recombinant BMP2 R&D systems Cat# 355-BM-100/CF Recombinant BMP4 R&D systems Cat# 314-BP-050/CF Recombinant Activin A R&D systems Cat# 338-AC-050/CF Recombinant Inhibin A R&D systems Cat# 8506-AB-010/CF Recombinant TGF-β1 This study Recombinant TGF-β2 This study Recombinant TGF-β3 This study Recombinant TGF-β3WD This study Recombinant TGFBR2 This study Recombinant TGFBR1 This study Recombinant BG This study Recombinant ratBGZP-C (wilde type + all mutants) This study Recombinant ratBGO (wilde type + all mutants) This study Recombinant zfBGO (wilde type + all mutants) This study Paraformaldehyde solution 4% in PBS ThermoFisher Scientific Cat# J19943-K2 ProLongTM antifade reagent Invitrogen Cat# P36930 EDC Pierce Cat# PG82079 EZ-Link Amine-PEG3-Biotin ThermoFisher Scientific Cat# 21347 Sulfo-NHS (N-hydroxysulfosuccinimide) Pierce Cat# PG82071 DMSO Sigma Cat# D1435 Amine Coupling Kit Cytiva Cat# BR100050 IPTG Goldbio Cat# I2481C Poly-L-Lysine Cultrex Cat# 3438-100-01 FuGene® HD Promega Cat# E2311 ExpiFectamineTM 293 Transfection Kit Gibco Cat# A14525 Lipofectamine 3000 ThermoFisher Scientific Cat# L3000015 Fetal Bovine Serum ThermoFisher Scientific Cat# 10270-106 DMEM ThermoFisher Scientific Cat# 41966029 FreeStyleTM 293 Expression Medium Gibco Cat# 12338-018 Penicillin-Streptomycin ThermoFisher Scientific Cat# 15140122 NeXtal PEGs II Suite Molecular Dimensions Cat#130916 Graphene Oxide Sigma Cat# 763705 MES Sigma Cat# M5287 HEPES Sigma Cat# H3375 Tris-HCl ThermoFisher Scientific Cat# 15506017 Sodium acetate Sigma Cat# S8750 NaCl Sigma Cat# S7653 Glutathione reduced Sigma Cat# G6013 Glutathione oxidized Sigma Cat# G4376 CHAPS Goldbio Cat# C-080-1 DTT Sigma Cat# D9779 Acetic acid, glacial Fisher Scientific Cat# 10304980 Isopropanol Fisher Scientific Cat# 10315720 Acetonitrile Fisher Scientific Cat# 10407440 .. X-ray structure of complex: mmTGF-β2:BGZP-C PDB, this study 8DC0 X-ray structure of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9B9F Cryo-EM map of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9FK5, EMD-50519 Cryo-EM map of complex: TGF–β1:BGO:(TGFBR2)2 PDB, this study 9FKP, EMD-50326 Cryo-EM map of complex: TGF–β1: ratBGO:(TGFBR2)2 PDB, this study 9FDY, EMD-50333 Cryo-EM map of complex: TGF–β1:BG PDB, this study EMD-50326

    Transfection:

    Article Title: Structures of TGF-β with betaglycan and signaling receptors reveal mechanisms of complex assembly and signaling
    Article Snippet: Anti-phospho-Smad2 (IF, Dilution: 1 in 500) Cell Signaling Technology Cat# 3108; RRID: AB_490941 Anti-SNAP-tag (Polyclonal, Dilution 1:1000) Invitrogen Cat# CAB4255 RRID: AB_10710011 Anti-Betaglycan (Polyclonal, Dilution 1:1000) R&D Cat#AF5034 RRID: AB_2202608 HRP-conjugated anti-rabbit secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0448 RRID: AB_2617138 HRP-conjugated anti-goat secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0449, RRID:AB_2617143 .. E. coli BL21(DE3) EMD-Milipore Cat# 69450-3 Chemicals, peptides, and recombinant proteins Alexa FluorTM 647 NHS ester ThermoFisher Scientific Cat# A20006 CF®640R Succinimide ester Biotium Cat# 92108 CF®568 Succinimide ester Biotium Cat# 92131 BG-NH2 O6-(4-Aminomethyl-benzyl)guanine AAT Bioquest Cat# 1256-AAT DAPI Sigma Cat# 10236276001 Recombinant BMP2 R&D systems Cat# 355-BM-100/CF Recombinant BMP4 R&D systems Cat# 314-BP-050/CF Recombinant Activin A R&D systems Cat# 338-AC-050/CF Recombinant Inhibin A R&D systems Cat# 8506-AB-010/CF Recombinant TGF-β1 This study Recombinant TGF-β2 This study Recombinant TGF-β3 This study Recombinant TGF-β3WD This study Recombinant TGFBR2 This study Recombinant TGFBR1 This study Recombinant BG This study Recombinant ratBGZP-C (wilde type + all mutants) This study Recombinant ratBGO (wilde type + all mutants) This study Recombinant zfBGO (wilde type + all mutants) This study Paraformaldehyde solution 4% in PBS ThermoFisher Scientific Cat# J19943-K2 ProLongTM antifade reagent Invitrogen Cat# P36930 EDC Pierce Cat# PG82079 EZ-Link Amine-PEG3-Biotin ThermoFisher Scientific Cat# 21347 Sulfo-NHS (N-hydroxysulfosuccinimide) Pierce Cat# PG82071 DMSO Sigma Cat# D1435 Amine Coupling Kit Cytiva Cat# BR100050 IPTG Goldbio Cat# I2481C Poly-L-Lysine Cultrex Cat# 3438-100-01 FuGene® HD Promega Cat# E2311 ExpiFectamineTM 293 Transfection Kit Gibco Cat# A14525 Lipofectamine 3000 ThermoFisher Scientific Cat# L3000015 Fetal Bovine Serum ThermoFisher Scientific Cat# 10270-106 DMEM ThermoFisher Scientific Cat# 41966029 FreeStyleTM 293 Expression Medium Gibco Cat# 12338-018 Penicillin-Streptomycin ThermoFisher Scientific Cat# 15140122 NeXtal PEGs II Suite Molecular Dimensions Cat#130916 Graphene Oxide Sigma Cat# 763705 MES Sigma Cat# M5287 HEPES Sigma Cat# H3375 Tris-HCl ThermoFisher Scientific Cat# 15506017 Sodium acetate Sigma Cat# S8750 NaCl Sigma Cat# S7653 Glutathione reduced Sigma Cat# G6013 Glutathione oxidized Sigma Cat# G4376 CHAPS Goldbio Cat# C-080-1 DTT Sigma Cat# D9779 Acetic acid, glacial Fisher Scientific Cat# 10304980 Isopropanol Fisher Scientific Cat# 10315720 Acetonitrile Fisher Scientific Cat# 10407440 .. X-ray structure of complex: mmTGF-β2:BGZP-C PDB, this study 8DC0 X-ray structure of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9B9F Cryo-EM map of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9FK5, EMD-50519 Cryo-EM map of complex: TGF–β1:BGO:(TGFBR2)2 PDB, this study 9FKP, EMD-50326 Cryo-EM map of complex: TGF–β1: ratBGO:(TGFBR2)2 PDB, this study 9FDY, EMD-50333 Cryo-EM map of complex: TGF–β1:BG PDB, this study EMD-50326

    Expressing:

    Article Title: Structures of TGF-β with betaglycan and signaling receptors reveal mechanisms of complex assembly and signaling
    Article Snippet: Anti-phospho-Smad2 (IF, Dilution: 1 in 500) Cell Signaling Technology Cat# 3108; RRID: AB_490941 Anti-SNAP-tag (Polyclonal, Dilution 1:1000) Invitrogen Cat# CAB4255 RRID: AB_10710011 Anti-Betaglycan (Polyclonal, Dilution 1:1000) R&D Cat#AF5034 RRID: AB_2202608 HRP-conjugated anti-rabbit secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0448 RRID: AB_2617138 HRP-conjugated anti-goat secondary antibodies (IF, Dilution: 1:5000) Dako Cat# P0449, RRID:AB_2617143 .. E. coli BL21(DE3) EMD-Milipore Cat# 69450-3 Chemicals, peptides, and recombinant proteins Alexa FluorTM 647 NHS ester ThermoFisher Scientific Cat# A20006 CF®640R Succinimide ester Biotium Cat# 92108 CF®568 Succinimide ester Biotium Cat# 92131 BG-NH2 O6-(4-Aminomethyl-benzyl)guanine AAT Bioquest Cat# 1256-AAT DAPI Sigma Cat# 10236276001 Recombinant BMP2 R&D systems Cat# 355-BM-100/CF Recombinant BMP4 R&D systems Cat# 314-BP-050/CF Recombinant Activin A R&D systems Cat# 338-AC-050/CF Recombinant Inhibin A R&D systems Cat# 8506-AB-010/CF Recombinant TGF-β1 This study Recombinant TGF-β2 This study Recombinant TGF-β3 This study Recombinant TGF-β3WD This study Recombinant TGFBR2 This study Recombinant TGFBR1 This study Recombinant BG This study Recombinant ratBGZP-C (wilde type + all mutants) This study Recombinant ratBGO (wilde type + all mutants) This study Recombinant zfBGO (wilde type + all mutants) This study Paraformaldehyde solution 4% in PBS ThermoFisher Scientific Cat# J19943-K2 ProLongTM antifade reagent Invitrogen Cat# P36930 EDC Pierce Cat# PG82079 EZ-Link Amine-PEG3-Biotin ThermoFisher Scientific Cat# 21347 Sulfo-NHS (N-hydroxysulfosuccinimide) Pierce Cat# PG82071 DMSO Sigma Cat# D1435 Amine Coupling Kit Cytiva Cat# BR100050 IPTG Goldbio Cat# I2481C Poly-L-Lysine Cultrex Cat# 3438-100-01 FuGene® HD Promega Cat# E2311 ExpiFectamineTM 293 Transfection Kit Gibco Cat# A14525 Lipofectamine 3000 ThermoFisher Scientific Cat# L3000015 Fetal Bovine Serum ThermoFisher Scientific Cat# 10270-106 DMEM ThermoFisher Scientific Cat# 41966029 FreeStyleTM 293 Expression Medium Gibco Cat# 12338-018 Penicillin-Streptomycin ThermoFisher Scientific Cat# 15140122 NeXtal PEGs II Suite Molecular Dimensions Cat#130916 Graphene Oxide Sigma Cat# 763705 MES Sigma Cat# M5287 HEPES Sigma Cat# H3375 Tris-HCl ThermoFisher Scientific Cat# 15506017 Sodium acetate Sigma Cat# S8750 NaCl Sigma Cat# S7653 Glutathione reduced Sigma Cat# G6013 Glutathione oxidized Sigma Cat# G4376 CHAPS Goldbio Cat# C-080-1 DTT Sigma Cat# D9779 Acetic acid, glacial Fisher Scientific Cat# 10304980 Isopropanol Fisher Scientific Cat# 10315720 Acetonitrile Fisher Scientific Cat# 10407440 .. X-ray structure of complex: mmTGF-β2:BGZP-C PDB, this study 8DC0 X-ray structure of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9B9F Cryo-EM map of complex: TGF-β3WD: BGO:TGFBR1:TGFBR2 PDB, this study 9FK5, EMD-50519 Cryo-EM map of complex: TGF–β1:BGO:(TGFBR2)2 PDB, this study 9FKP, EMD-50326 Cryo-EM map of complex: TGF–β1: ratBGO:(TGFBR2)2 PDB, this study 9FDY, EMD-50333 Cryo-EM map of complex: TGF–β1:BG PDB, this study EMD-50326



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    Figure 5. Cell lines preferentially respond to different ligand combinations (A) Responses were measured for, from left to right, NMuMG cells, NMuMG cells with ACVR1 knockdown (KD), NMuMG cells with BMPR2 KD, NMuMG cells with ACVRL1 overexpression (OX), and mESCs, using flow cytometry of an integrated fluorescent protein reporter (STAR Methods: Addressing of cell lines). Each cell line was exposed to a double titration of <t>BMP2</t> and BMP9, and responses were quantified by taking the mean of at least 3 replicates. For each cell line, fold change is calculated relative to the baseline fluorescence with no added ligand and then normalized by the maximum value. Responses at select ligand words (red circles) are analyzed further in (B). (B) For select ligand words from (A), the responses of each cell line are shown. Error bars indicate SD of at least 3 repeats. Ligand words were chosen by fixing a threshold of 0.5 (gray dashed line) and identifying those ligand combinations yielding unique on- and off-target activation patterns. (C) Data from (B) are summarized by showing the response of each cell type (columns) to each ligand word (rows), illustrating that distinct ligand words can activate different subsets of cell types. (D) Responses of NMuMG, NMuMG with ACVR1 KD, and NMuMG with BMPR2 KD to BMP9 and BMP10 are shown, as in (A). (E) As in (B), the responses of each cell type at selected ligand words are shown. (F) As in (C), the responses of each cell type (columns) to each ligand word (rows) confirm that distinct ligand words preferentially activate distinct groups of cell types. See also Table S1.
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    Figure 5. Cell lines preferentially respond to different ligand combinations (A) Responses were measured for, from left to right, NMuMG cells, NMuMG cells with ACVR1 knockdown (KD), NMuMG cells with BMPR2 KD, NMuMG cells with ACVRL1 overexpression (OX), and mESCs, using flow cytometry of an integrated fluorescent protein reporter (STAR Methods: Addressing of cell lines). Each cell line was exposed to a double titration of <t>BMP2</t> and BMP9, and responses were quantified by taking the mean of at least 3 replicates. For each cell line, fold change is calculated relative to the baseline fluorescence with no added ligand and then normalized by the maximum value. Responses at select ligand words (red circles) are analyzed further in (B). (B) For select ligand words from (A), the responses of each cell line are shown. Error bars indicate SD of at least 3 repeats. Ligand words were chosen by fixing a threshold of 0.5 (gray dashed line) and identifying those ligand combinations yielding unique on- and off-target activation patterns. (C) Data from (B) are summarized by showing the response of each cell type (columns) to each ligand word (rows), illustrating that distinct ligand words can activate different subsets of cell types. (D) Responses of NMuMG, NMuMG with ACVR1 KD, and NMuMG with BMPR2 KD to BMP9 and BMP10 are shown, as in (A). (E) As in (B), the responses of each cell type at selected ligand words are shown. (F) As in (C), the responses of each cell type (columns) to each ligand word (rows) confirm that distinct ligand words preferentially activate distinct groups of cell types. See also Table S1.
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    Image Search Results


    Figure 5. Cell lines preferentially respond to different ligand combinations (A) Responses were measured for, from left to right, NMuMG cells, NMuMG cells with ACVR1 knockdown (KD), NMuMG cells with BMPR2 KD, NMuMG cells with ACVRL1 overexpression (OX), and mESCs, using flow cytometry of an integrated fluorescent protein reporter (STAR Methods: Addressing of cell lines). Each cell line was exposed to a double titration of BMP2 and BMP9, and responses were quantified by taking the mean of at least 3 replicates. For each cell line, fold change is calculated relative to the baseline fluorescence with no added ligand and then normalized by the maximum value. Responses at select ligand words (red circles) are analyzed further in (B). (B) For select ligand words from (A), the responses of each cell line are shown. Error bars indicate SD of at least 3 repeats. Ligand words were chosen by fixing a threshold of 0.5 (gray dashed line) and identifying those ligand combinations yielding unique on- and off-target activation patterns. (C) Data from (B) are summarized by showing the response of each cell type (columns) to each ligand word (rows), illustrating that distinct ligand words can activate different subsets of cell types. (D) Responses of NMuMG, NMuMG with ACVR1 KD, and NMuMG with BMPR2 KD to BMP9 and BMP10 are shown, as in (A). (E) As in (B), the responses of each cell type at selected ligand words are shown. (F) As in (C), the responses of each cell type (columns) to each ligand word (rows) confirm that distinct ligand words preferentially activate distinct groups of cell types. See also Table S1.

    Journal: Cell systems

    Article Title: Ligand-receptor promiscuity enables cellular addressing.

    doi: 10.1016/j.cels.2022.03.001

    Figure Lengend Snippet: Figure 5. Cell lines preferentially respond to different ligand combinations (A) Responses were measured for, from left to right, NMuMG cells, NMuMG cells with ACVR1 knockdown (KD), NMuMG cells with BMPR2 KD, NMuMG cells with ACVRL1 overexpression (OX), and mESCs, using flow cytometry of an integrated fluorescent protein reporter (STAR Methods: Addressing of cell lines). Each cell line was exposed to a double titration of BMP2 and BMP9, and responses were quantified by taking the mean of at least 3 replicates. For each cell line, fold change is calculated relative to the baseline fluorescence with no added ligand and then normalized by the maximum value. Responses at select ligand words (red circles) are analyzed further in (B). (B) For select ligand words from (A), the responses of each cell line are shown. Error bars indicate SD of at least 3 repeats. Ligand words were chosen by fixing a threshold of 0.5 (gray dashed line) and identifying those ligand combinations yielding unique on- and off-target activation patterns. (C) Data from (B) are summarized by showing the response of each cell type (columns) to each ligand word (rows), illustrating that distinct ligand words can activate different subsets of cell types. (D) Responses of NMuMG, NMuMG with ACVR1 KD, and NMuMG with BMPR2 KD to BMP9 and BMP10 are shown, as in (A). (E) As in (B), the responses of each cell type at selected ligand words are shown. (F) As in (C), the responses of each cell type (columns) to each ligand word (rows) confirm that distinct ligand words preferentially activate distinct groups of cell types. See also Table S1.

    Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER Chemicals, Peptides, and Recombinant Proteins BMP2 R&D Systems Cat# 355-BM BMP9 R&D Systems Cat# 5566-BP BMP10 R&D Systems Cat# 6038-BP Fetal Bovine Serum Clontech Cat# 631367 Fetal Bovine Serum, ES Cell Qualified Gibco Cat# 16141 Leukemia Inhibitory Factor MilliporeSigma Cat# ESG1107 Trypsin Gibco Cat# 25200 Accutase Gibco Cat# A11105 Deposited Data Optimization and simulation results This paper https://doi.org/10.22002/D1.1692 Experimental measurements of BMP responses in multiple cell lines This paper https://doi.org/10.22002/D1.1692 Experimental Models: Cell Lines NMuMG sensor line Klumpe et al., 2022 N/A NMuMG sensor line with ACVR1 knockdown Klumpe et al., 2022 N/A NMuMG sensor line with BMPR2 knockdown Klumpe et al., 2022 N/A NMuMG sensor line with ACVRL1 overexpression Klumpe et al., 2022 N/A mESC sensor line Antebi et al., 2017 N/A Software and Algorithms MATLAB MathWorks N/A Python Python Software Foundation N/A Equilibrium Toolkit (EQTK) (Python) Bois, 2020 https://github.com/justinbois/eqtk and https://doi.org/10.22002/D1.1430 PromiSys (Python) This paper https://github.com/christinasu/PromiSys and https://doi.org/10.22002/D1.20047 Simulation and analysis code (Python) This paper https://github.com/christinasu/PromiSys and https://doi.org/10.22002/D1.20047 EasyFlow (MATLAB) Antebi et al., 2017 https://github.com/AntebiLab/easyflow

    Techniques: Knockdown, Over Expression, Cytometry, Titration, Activation Assay