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recombinant human stem cell factor rhscf  (R&D Systems)


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    R&D Systems recombinant human stem cell factor rhscf
    Recombinant Human Stem Cell Factor Rhscf, supplied by R&D Systems, used in various techniques. Bioz Stars score: 96/100, based on 269 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+stem+cell+factor+rhscf/Recombinant+Human+SCF+Protein/pmc12678476-561-18-25
    Average 96 stars, based on 269 article reviews
    recombinant human stem cell factor rhscf - by Bioz Stars, 2026-09
    96/100 stars

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    Recombinant:

    Article Title: TRIM10β upregulation promotes microtubule destabilization and triggers proteotoxic stress.
    Article Snippet: Microtubule stability is critical for maintaining cytoskeletal integrity and is finely tuned by post-translational modifications of tubulin and its associated regulatory factors.. However, it remains unclear how microtubules become destabilized under stress or disease conditions and contribute to pathogenesis.. Here, we identify TRIM10β, a previously uncharacterized splice variant of TRIM10, as a microtubule-associated protein that disrupts the interaction between tubulin and End Binding protein 1 (EB1), which plays a critical role in microtubule stabilization.

    Article Title: Esomeprazole induces structural changes and apoptosis and alters function of in vitro canine neoplastic mast cells.
    Article Snippet: Histamine-2 receptor antagonists such as famotidine and proton pump inhibitors such as esomeprazole are commonly used in canine MCT disease, but direct effects on dog MCs have not been evaluated.. Omeprazole is a proton pump inhibitor which has been demonstrated to cause structural and functional changes to in vitro murine mast cells (MCs).. It has not yet been determined if esomeprazole, the commercially available and commonly prescribed S-isomer of omeprazole, has similar effects.

    Article Title: Stage-specific TRIM10 expression regulates erythroid maturation
    Article Snippet: Human umbilical cord-derived erythroid progenitor (HUDEP-2) cells were purchased from RIKEN BioResource Research Center, Japan (Kurita et al, ). .. HUDEP-2 cells were expanded in StemSpan serum-free expansion medium (SFEM) (#09650, Stem Cell Technologies) supplemented with 100 ng/ml recombinant human stem cell factor (rhSCF) (#255-SC, R&D Systems), 3 IU/ml recombinant human erythropoietin (rhEPO) (#78007, Stem Cell Technologies), 1 μM dexamethasone (D4902, Sigma-Aldrich), 1 μg/ml doxycycline (D9891, Sigma-Aldrich), and 1% penicillin-streptomycin (SV30010, HyClone). .. To induce erythroid differentiation, HUDEP-2 cells were cultured in Iscove’s modified Dulbecco’s medium (IMDM) (SH30259, HyClone) supplemented with 330 μg/ml human holo-transferrin (T0665, Sigma-Aldrich), 5% AB human serum (H5667, Sigma-Aldrich), 2 IU/ml heparin (H3149, Sigma-Aldrich), 10 μg/ml human insulin (I9278, Sigma-Aldrich), 2 mM L -glutamine, 3 IU/ml rhEPO, 100 ng/ml rhSCF, 1 μg/ml doxycycline, and 1% penicillin-streptomycin. rhSCF was excluded from the differentiation media on day 6, followed by the removal of doxycycline on day 8.

    Article Title: Orai and TRPC channel characterization in Fc ε RI‐mediated calcium signaling and mediator secretion in human mast cells
    Article Snippet: .. LAD2 were cultured in StemPro‐34 media supplemented with StemPro‐34 nutrient supplement and 2 mmol/L L‐glutamine (all Gibco Life Technologies) in addition to 100 ng/mL recombinant human stem cell factor (rhSCF) (R&D systems). ..

    Article Title: Method for identifying epitope on protein
    Article Snippet: After removal of the whole amount of the medium from the dish, Primate ES cell medium supplemented with 1/100-fold ITS and 50 ng/mL recombinant human bone morphogenetic protein 4 (rhBMP4) (HumanZyme, Inc., Cat.: 314-BP) was added in an amount of 7 mL to each dish, followed by culture at 37° C. for 4 days under 5% CO2 conditions (see the middle photograph on the upper column of FIG. 2). .. After removal of the whole amount of the medium from the dish, Primate ES cell medium supplemented with 1/100-fold ITS, 40 ng/mL recombinant human Vascular Endothelial Growth Factor 165 (rhVEGF165) (R&D Systems, Inc., Cat.: 293-VE), and 50 ng/mL recombinant human Stem Cell Factor (rhSCF) (R&D Systems, Inc., Cat.: 255-SC) was added in an amount of 4 mL to each dish, followed by culture at 37° C. for 2 days under 5% CO2 conditions (see the right photograph on the upper column of FIG. 2). .. After removal of the whole amount of the medium, StemPro-34 medium (Life Technologies/Thermo Fisher Scientific Inc., Cat.: 10640) supplemented with 1/100-fold ITS, 100 ng/mL recombinant human Granulocyte Macrophage colony-stimulating factor (rhGM-CSF) (HumanZyme, Inc., Cat.: HZ-1082), and 50 ng/mL recombinant human Macrophage colony-stimulating factor (rhM-CSF) (HumanZyme, Inc., Cat.: HZ-1039) was added in an amount of 5 mL to each dish, followed by culture at 37° C. under 5% CO2 conditions during which the culture solution was replaced with a fresh one every 3 to 4 days (see the middle photograph on the lower column of FIG. 2).

    Article Title: Stage-specific TRIM10 expression regulates erythroid maturation.
    Article Snippet: Human umbilical cord-derived erythroid progenitor (HUDEP-2) cells were purchased from RIKEN BioResource Research Center, Japan (Kurita et al, 2013). .. HUDEP-2 cells were expanded in StemSpan serum-free expansion medium (SFEM) (#09650, Stem Cell Technologies) supplemented with 100 ng/ml recombinant human stem cell factor (rhSCF) (#255-SC, R&D Systems), 3 IU/ml recombinant human erythropoietin (rhEPO) (#78007, Stem Cell Technologies), 1 μM dexamethasone (D4902, Sigma-Aldrich), 1 μg/ ml doxycycline (D9891, Sigma-Aldrich), and 1% penicillinstreptomycin (SV30010, HyClone). .. To induce erythroid differentiation, HUDEP-2 cells were cultured in Iscove’s modified Dulbecco’s medium (IMDM) (SH30259, HyClone) supplemented with 330 μg/ml human holo-transferrin (T0665, Sigma-Aldrich), 5% AB human serum (H5667, Sigma-Aldrich), 2 IU/ml heparin (H3149, Sigma-Aldrich), 10 μg/ml human insulin (I9278, Reagents and tools table Reagent/resource Reference or source Identifier or catalog number Experimental models HUDEP-2 cells (H. sapiens) Kurita et al, (2013) RIKEN BioResource Research Center, Japan HEK293T cells (H. sapiens) ATCC CRL-1573 C57BL/6 N (M. musculus) OrientBio The Jackson Laboratory Recombinant DNA pMSCVpuro Clontech #634401 pcDNA3.1(+) Life Technologies V79020 eSpCas9-LentiCRISPR v2 GenScript N/A Myc-TRIM10α pMSCV N/A Myc-TRIM10α ΔRING pMSCV N/A Myc-TRIM10α ΔB-box pMSCV N/A Myc-TRIM10α ΔCoiled-coil pMSCV N/A Myc-TRIM10 ΔPRY/SPRY pMSCV N/A GFP-TRIM10β pMSCV N/A GFP-TRIM10β ΔRING pMSCV N/A GFP-TRIM10 ΔPRY/SPRY pMSCV N/A GFP-TRIM10α pcDNA3.1(+) N/A GFP-TRIM10α ΔRING pcDNA3.1(+) N/A GFP-TRIM10α ΔB-box pcDNA3.1(+) N/A GFP-TRIM10α ΔCoiled-coil pcDNA3.1(+) N/A GFP-TRIM10 ΔPRY/SPRY pcDNA3.1(+) N/A GFP-TRIM10β pcDNA3.1(+) N/A GFP-TRIM10β ΔRING pcDNA3.1(+) N/A GFP-TRIM10β ΔB-box pcDNA3.1(+) N/A GFP-TRIM10β ΔCoiled-coil pcDNA3.1(+) N/A sgControl eSpCas9-LentiCRISPR v2 N/A sgTRIM10 eSpCas9-LentiCRISPR v2 N/A Antibodies Mouse anti-Myc Cell Signaling Technology #2276 Rabbit anti-Myc Cell Signaling Technology #2278 Mouse anti-Lamin A/C Cell Signaling Technology #4777 Rabbit anti-PARP1 Cell Signaling Technology #9532 Rabbit anti-cleaved Caspase-3 Cell Signaling Technology #9661 © The Author(s) EMBO reports 13 D ow nloaded from https://w w w .em bopress.org on N ovem ber 8, 2025 from IP 2400:1a00:4ba5:c093:f5ff:4dcd:7589:c171.

    Article Title: Human Mast Cell Line HMC1 Expresses Functional Mas-Related G-Protein Coupled Receptor 2
    Article Snippet: .. LAD2 cells [kindly provided by Drs. Kirshenbaum and Metcalfe, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland ( )] were cultured in Stem Pro‐34 medium, supplemented with 2.6% nutrient supplement (both Life Technologies, Grand Island, New York), 2 mmol/L ultraglutamine (Lonza, Verviers, Belgium), recombinant human stem cell factor (rhSCF) (100 ng/ml, R&D systems, Abbingdon, UK), and 1% antibiotics (penicillin/streptomycin). ..

    Article Title: Pharmacological characterization of hetrombopag, a novel orally active human thrombopoietin receptor agonist.
    Article Snippet: Eltrombopag was purchased from Selleckchem (Houston, TX). .. Recombinant human TPO (rhTPO), recombinant human erythropoietin (rhEPO), recombinant human granulocyte colony‐stimulating factor (rhGCSF), recombinant human stem cell factor (rhSCF) and recombinant mouse interleukin‐3 (rmIL‐3) were purchased from R&D Systems (Minneapolis, MN). .. ABT‐737 was obtained from Dalian Meilun Biotechnology Co. Ltd. (Jiangsu, China).

    Cell Culture:

    Article Title: Orai and TRPC channel characterization in Fc ε RI‐mediated calcium signaling and mediator secretion in human mast cells
    Article Snippet: .. LAD2 were cultured in StemPro‐34 media supplemented with StemPro‐34 nutrient supplement and 2 mmol/L L‐glutamine (all Gibco Life Technologies) in addition to 100 ng/mL recombinant human stem cell factor (rhSCF) (R&D systems). ..

    Article Title: Human Mast Cell Line HMC1 Expresses Functional Mas-Related G-Protein Coupled Receptor 2
    Article Snippet: .. LAD2 cells [kindly provided by Drs. Kirshenbaum and Metcalfe, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland ( )] were cultured in Stem Pro‐34 medium, supplemented with 2.6% nutrient supplement (both Life Technologies, Grand Island, New York), 2 mmol/L ultraglutamine (Lonza, Verviers, Belgium), recombinant human stem cell factor (rhSCF) (100 ng/ml, R&D systems, Abbingdon, UK), and 1% antibiotics (penicillin/streptomycin). ..



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    Biological characterization of PSB-172656. a Selectivity of PSB-172656 (100 nM) for MRGPRX2 over MRGPRX1, MRGPRX3, and MRGPRX4 measured in β -arrestin assays utilizing β -arrestin-CHO cells with <t>recombinant</t> expression of the respective receptor. MRGPRX1 was activated by BAM-22P (8.5 µM), MRGPRX2 was activated by CST-14 (1 µM), MRGPRX3 was activated by PSB-20294 (10 µM), MRGPRX4 was activated by PSB-18061 (2.6 µM). Data represent mean values ± SEM of 3-4 biological replicates, performed in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparisons) test ( ns P > 0.05 and **** P < 0.0001), comparing the effect of each MRGPRX agonist in the presence of PSB-172656 (10 µM) versus their maximal effects (100%) in the absence of the antagonist. b p K i values of PSB-172656 determined using β -arrestin recruitment assays versus structurally diverse MRGPRX2 agonists, versus the peptide agonist SP (EC 80 3 µM); the small-molecule agonist ( R )-ZINC-3573 (EC 80 2 µM); C48/80 (EC 80 18 µM); the tricyclic antidepressant and MRGPRX2 agonist clomipramine (EC 80 13 µM), and CST-14 as a control. Data are means ± SEM of 3 biological replicates, in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparison) test ( ns P > 0.05). For concentration-response curves and structures, see Supplementary Fig. . c TRUPATH G α q dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α q RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 499 ± 207 nM. This effect was completely inhibited after the preincubation of PSB-172656 (100 nM). d TRUPATH G α i1 dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α i1 RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 113 ± 16 nM. CST-14-induced G α i1 dissociation was completely inhibited after preincubation with PSB-172656 (100 nM). Data are means ± SEM of 3 biological replicates, performed in duplicates. e Shift assay to determine inhibition type of PSB-172656 versus CST-14. EC 50 values: without antagonist: 283 ± 45 nM; with 10 nM PSB-172656: 601 ± 89 nM; with 20 nM PSB-172656: 1580 ± 403 nM; with 40 nM PSB-172656: 2510 ± 889 nM; with 100 nM PSB-172656: 4,590 ± 1,580 nM; with 200 nM PSB-172656: 6260 ± 113 nM, faint dashed lines indicate extrapolation. Extrapolated data were not used for analysis but only shown for a comprehensive view. f Schild plot for the effect of PSB-172656 on the concentration-response curves for CST-14. K B value of 6.71 nM (slope,1.08; X-intercept, -8.17 coresponding to -p K B value). g Inhibition mode of PS B -172656 versus ( R )-ZINC-3573. EC 50 values: without antagonist: 2020 ± 333 nM; with 10 nM PSB-172656: 4060 ± 1560 nM; with 20 nM PSB-172656: 6780 ± 572 nM; with 40 nM PSB-172656: 15,900 ± 4020 nM; with 100 nM PSB-172656: 26,300 ± 49,10 nM; with 200 nM PSB-172656: 29,400 ± 4550 nM. h Schild plot for the effect of PSB-172656 on the concentration-response curves for ( R )-ZINC-3573. K B value: 7.59 nM (slope, 0.891; X-intercept, -8.17 corresponding to -p K B value). Data represent means ± SEM of 3-6 biological replicates
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    Biological characterization of PSB-172656. a Selectivity of PSB-172656 (100 nM) for MRGPRX2 over MRGPRX1, MRGPRX3, and MRGPRX4 measured in β -arrestin assays utilizing β -arrestin-CHO cells with <t>recombinant</t> expression of the respective receptor. MRGPRX1 was activated by BAM-22P (8.5 µM), MRGPRX2 was activated by CST-14 (1 µM), MRGPRX3 was activated by PSB-20294 (10 µM), MRGPRX4 was activated by PSB-18061 (2.6 µM). Data represent mean values ± SEM of 3-4 biological replicates, performed in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparisons) test ( ns P > 0.05 and **** P < 0.0001), comparing the effect of each MRGPRX agonist in the presence of PSB-172656 (10 µM) versus their maximal effects (100%) in the absence of the antagonist. b p K i values of PSB-172656 determined using β -arrestin recruitment assays versus structurally diverse MRGPRX2 agonists, versus the peptide agonist SP (EC 80 3 µM); the small-molecule agonist ( R )-ZINC-3573 (EC 80 2 µM); C48/80 (EC 80 18 µM); the tricyclic antidepressant and MRGPRX2 agonist clomipramine (EC 80 13 µM), and CST-14 as a control. Data are means ± SEM of 3 biological replicates, in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparison) test ( ns P > 0.05). For concentration-response curves and structures, see Supplementary Fig. . c TRUPATH G α q dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α q RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 499 ± 207 nM. This effect was completely inhibited after the preincubation of PSB-172656 (100 nM). d TRUPATH G α i1 dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α i1 RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 113 ± 16 nM. CST-14-induced G α i1 dissociation was completely inhibited after preincubation with PSB-172656 (100 nM). Data are means ± SEM of 3 biological replicates, performed in duplicates. e Shift assay to determine inhibition type of PSB-172656 versus CST-14. EC 50 values: without antagonist: 283 ± 45 nM; with 10 nM PSB-172656: 601 ± 89 nM; with 20 nM PSB-172656: 1580 ± 403 nM; with 40 nM PSB-172656: 2510 ± 889 nM; with 100 nM PSB-172656: 4,590 ± 1,580 nM; with 200 nM PSB-172656: 6260 ± 113 nM, faint dashed lines indicate extrapolation. Extrapolated data were not used for analysis but only shown for a comprehensive view. f Schild plot for the effect of PSB-172656 on the concentration-response curves for CST-14. K B value of 6.71 nM (slope,1.08; X-intercept, -8.17 coresponding to -p K B value). g Inhibition mode of PS B -172656 versus ( R )-ZINC-3573. EC 50 values: without antagonist: 2020 ± 333 nM; with 10 nM PSB-172656: 4060 ± 1560 nM; with 20 nM PSB-172656: 6780 ± 572 nM; with 40 nM PSB-172656: 15,900 ± 4020 nM; with 100 nM PSB-172656: 26,300 ± 49,10 nM; with 200 nM PSB-172656: 29,400 ± 4550 nM. h Schild plot for the effect of PSB-172656 on the concentration-response curves for ( R )-ZINC-3573. K B value: 7.59 nM (slope, 0.891; X-intercept, -8.17 corresponding to -p K B value). Data represent means ± SEM of 3-6 biological replicates
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    Biological characterization of PSB-172656. a Selectivity of PSB-172656 (100 nM) for MRGPRX2 over MRGPRX1, MRGPRX3, and MRGPRX4 measured in β -arrestin assays utilizing β -arrestin-CHO cells with <t>recombinant</t> expression of the respective receptor. MRGPRX1 was activated by BAM-22P (8.5 µM), MRGPRX2 was activated by CST-14 (1 µM), MRGPRX3 was activated by PSB-20294 (10 µM), MRGPRX4 was activated by PSB-18061 (2.6 µM). Data represent mean values ± SEM of 3-4 biological replicates, performed in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparisons) test ( ns P > 0.05 and **** P < 0.0001), comparing the effect of each MRGPRX agonist in the presence of PSB-172656 (10 µM) versus their maximal effects (100%) in the absence of the antagonist. b p K i values of PSB-172656 determined using β -arrestin recruitment assays versus structurally diverse MRGPRX2 agonists, versus the peptide agonist SP (EC 80 3 µM); the small-molecule agonist ( R )-ZINC-3573 (EC 80 2 µM); C48/80 (EC 80 18 µM); the tricyclic antidepressant and MRGPRX2 agonist clomipramine (EC 80 13 µM), and CST-14 as a control. Data are means ± SEM of 3 biological replicates, in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparison) test ( ns P > 0.05). For concentration-response curves and structures, see Supplementary Fig. . c TRUPATH G α q dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α q RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 499 ± 207 nM. This effect was completely inhibited after the preincubation of PSB-172656 (100 nM). d TRUPATH G α i1 dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α i1 RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 113 ± 16 nM. CST-14-induced G α i1 dissociation was completely inhibited after preincubation with PSB-172656 (100 nM). Data are means ± SEM of 3 biological replicates, performed in duplicates. e Shift assay to determine inhibition type of PSB-172656 versus CST-14. EC 50 values: without antagonist: 283 ± 45 nM; with 10 nM PSB-172656: 601 ± 89 nM; with 20 nM PSB-172656: 1580 ± 403 nM; with 40 nM PSB-172656: 2510 ± 889 nM; with 100 nM PSB-172656: 4,590 ± 1,580 nM; with 200 nM PSB-172656: 6260 ± 113 nM, faint dashed lines indicate extrapolation. Extrapolated data were not used for analysis but only shown for a comprehensive view. f Schild plot for the effect of PSB-172656 on the concentration-response curves for CST-14. K B value of 6.71 nM (slope,1.08; X-intercept, -8.17 coresponding to -p K B value). g Inhibition mode of PS B -172656 versus ( R )-ZINC-3573. EC 50 values: without antagonist: 2020 ± 333 nM; with 10 nM PSB-172656: 4060 ± 1560 nM; with 20 nM PSB-172656: 6780 ± 572 nM; with 40 nM PSB-172656: 15,900 ± 4020 nM; with 100 nM PSB-172656: 26,300 ± 49,10 nM; with 200 nM PSB-172656: 29,400 ± 4550 nM. h Schild plot for the effect of PSB-172656 on the concentration-response curves for ( R )-ZINC-3573. K B value: 7.59 nM (slope, 0.891; X-intercept, -8.17 corresponding to -p K B value). Data represent means ± SEM of 3-6 biological replicates
    Recombinant Human Stem Cell Factor (Rhscf, supplied by PeproTech, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+stem+cell+factor+rhscf/recombinant+human+stem+cell+factor/pmc11561222-175-24-30
    Average 90 stars, based on 1 article reviews
    recombinant human stem cell factor (rhscf - by Bioz Stars, 2026-09
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    Biological characterization of PSB-172656. a Selectivity of PSB-172656 (100 nM) for MRGPRX2 over MRGPRX1, MRGPRX3, and MRGPRX4 measured in β -arrestin assays utilizing β -arrestin-CHO cells with recombinant expression of the respective receptor. MRGPRX1 was activated by BAM-22P (8.5 µM), MRGPRX2 was activated by CST-14 (1 µM), MRGPRX3 was activated by PSB-20294 (10 µM), MRGPRX4 was activated by PSB-18061 (2.6 µM). Data represent mean values ± SEM of 3-4 biological replicates, performed in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparisons) test ( ns P > 0.05 and **** P < 0.0001), comparing the effect of each MRGPRX agonist in the presence of PSB-172656 (10 µM) versus their maximal effects (100%) in the absence of the antagonist. b p K i values of PSB-172656 determined using β -arrestin recruitment assays versus structurally diverse MRGPRX2 agonists, versus the peptide agonist SP (EC 80 3 µM); the small-molecule agonist ( R )-ZINC-3573 (EC 80 2 µM); C48/80 (EC 80 18 µM); the tricyclic antidepressant and MRGPRX2 agonist clomipramine (EC 80 13 µM), and CST-14 as a control. Data are means ± SEM of 3 biological replicates, in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparison) test ( ns P > 0.05). For concentration-response curves and structures, see Supplementary Fig. . c TRUPATH G α q dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α q RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 499 ± 207 nM. This effect was completely inhibited after the preincubation of PSB-172656 (100 nM). d TRUPATH G α i1 dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α i1 RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 113 ± 16 nM. CST-14-induced G α i1 dissociation was completely inhibited after preincubation with PSB-172656 (100 nM). Data are means ± SEM of 3 biological replicates, performed in duplicates. e Shift assay to determine inhibition type of PSB-172656 versus CST-14. EC 50 values: without antagonist: 283 ± 45 nM; with 10 nM PSB-172656: 601 ± 89 nM; with 20 nM PSB-172656: 1580 ± 403 nM; with 40 nM PSB-172656: 2510 ± 889 nM; with 100 nM PSB-172656: 4,590 ± 1,580 nM; with 200 nM PSB-172656: 6260 ± 113 nM, faint dashed lines indicate extrapolation. Extrapolated data were not used for analysis but only shown for a comprehensive view. f Schild plot for the effect of PSB-172656 on the concentration-response curves for CST-14. K B value of 6.71 nM (slope,1.08; X-intercept, -8.17 coresponding to -p K B value). g Inhibition mode of PS B -172656 versus ( R )-ZINC-3573. EC 50 values: without antagonist: 2020 ± 333 nM; with 10 nM PSB-172656: 4060 ± 1560 nM; with 20 nM PSB-172656: 6780 ± 572 nM; with 40 nM PSB-172656: 15,900 ± 4020 nM; with 100 nM PSB-172656: 26,300 ± 49,10 nM; with 200 nM PSB-172656: 29,400 ± 4550 nM. h Schild plot for the effect of PSB-172656 on the concentration-response curves for ( R )-ZINC-3573. K B value: 7.59 nM (slope, 0.891; X-intercept, -8.17 corresponding to -p K B value). Data represent means ± SEM of 3-6 biological replicates

    Journal: Signal Transduction and Targeted Therapy

    Article Title: Subnanomolar MAS-related G protein-coupled receptor-X2/B2 antagonists with efficacy in human mast cells and disease models

    doi: 10.1038/s41392-025-02209-8

    Figure Lengend Snippet: Biological characterization of PSB-172656. a Selectivity of PSB-172656 (100 nM) for MRGPRX2 over MRGPRX1, MRGPRX3, and MRGPRX4 measured in β -arrestin assays utilizing β -arrestin-CHO cells with recombinant expression of the respective receptor. MRGPRX1 was activated by BAM-22P (8.5 µM), MRGPRX2 was activated by CST-14 (1 µM), MRGPRX3 was activated by PSB-20294 (10 µM), MRGPRX4 was activated by PSB-18061 (2.6 µM). Data represent mean values ± SEM of 3-4 biological replicates, performed in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparisons) test ( ns P > 0.05 and **** P < 0.0001), comparing the effect of each MRGPRX agonist in the presence of PSB-172656 (10 µM) versus their maximal effects (100%) in the absence of the antagonist. b p K i values of PSB-172656 determined using β -arrestin recruitment assays versus structurally diverse MRGPRX2 agonists, versus the peptide agonist SP (EC 80 3 µM); the small-molecule agonist ( R )-ZINC-3573 (EC 80 2 µM); C48/80 (EC 80 18 µM); the tricyclic antidepressant and MRGPRX2 agonist clomipramine (EC 80 13 µM), and CST-14 as a control. Data are means ± SEM of 3 biological replicates, in duplicates. Statistical significance was determined by one-way ANOVA (Tukey’s multiple comparison) test ( ns P > 0.05). For concentration-response curves and structures, see Supplementary Fig. . c TRUPATH G α q dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α q RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 499 ± 207 nM. This effect was completely inhibited after the preincubation of PSB-172656 (100 nM). d TRUPATH G α i1 dissociation assays in LN229 glioblastoma cells recombinantly expressing MRGPRX2 and G α i1 RLuc8, Gβ 3 , and Gγ 9 -GFP2, concentration-response curve of the MRGPRX2 peptide agonist CST-14 showing an EC 50 value of 113 ± 16 nM. CST-14-induced G α i1 dissociation was completely inhibited after preincubation with PSB-172656 (100 nM). Data are means ± SEM of 3 biological replicates, performed in duplicates. e Shift assay to determine inhibition type of PSB-172656 versus CST-14. EC 50 values: without antagonist: 283 ± 45 nM; with 10 nM PSB-172656: 601 ± 89 nM; with 20 nM PSB-172656: 1580 ± 403 nM; with 40 nM PSB-172656: 2510 ± 889 nM; with 100 nM PSB-172656: 4,590 ± 1,580 nM; with 200 nM PSB-172656: 6260 ± 113 nM, faint dashed lines indicate extrapolation. Extrapolated data were not used for analysis but only shown for a comprehensive view. f Schild plot for the effect of PSB-172656 on the concentration-response curves for CST-14. K B value of 6.71 nM (slope,1.08; X-intercept, -8.17 coresponding to -p K B value). g Inhibition mode of PS B -172656 versus ( R )-ZINC-3573. EC 50 values: without antagonist: 2020 ± 333 nM; with 10 nM PSB-172656: 4060 ± 1560 nM; with 20 nM PSB-172656: 6780 ± 572 nM; with 40 nM PSB-172656: 15,900 ± 4020 nM; with 100 nM PSB-172656: 26,300 ± 49,10 nM; with 200 nM PSB-172656: 29,400 ± 4550 nM. h Schild plot for the effect of PSB-172656 on the concentration-response curves for ( R )-ZINC-3573. K B value: 7.59 nM (slope, 0.891; X-intercept, -8.17 corresponding to -p K B value). Data represent means ± SEM of 3-6 biological replicates

    Article Snippet: The human mast cell line Laboratory of Allergic Diseases 2 (LAD2) was kindly provided by Dr. A. Kirshenbaum and Dr. D. Metcalfe (Laboratory of Allergic Diseases, National Institute of Allergy and Infectious Diseases, National Institute of Health, Bethesda, MD, USA) and maintained in a complete StemPro-34 medium supplemented with L-glutamine (2 mM), penicillin (100 IU/mL), streptomycin (100 μg/mL), and recombinant human stem cell factor (rhSCF, 100 ng/mL). rhSCF was purchased from PeproTech (Rocky Hill, NJ, USA).

    Techniques: Recombinant, Expressing, Control, Comparison, Concentration Assay, Shift Assay, Inhibition