carm1 inhibitor (Millipore)
Structured Review

Carm1 Inhibitor, supplied by Millipore, 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/carm1+inhibitor/pmc10696550-61-48-53?v=Millipore
Average 90 stars, based on 1 article reviews
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1) Product Images from "RPF2 mediates the CARM1‑MYCN axis to promote chemotherapy resistance in colorectal cancer cells"
Article Title: RPF2 mediates the CARM1‑MYCN axis to promote chemotherapy resistance in colorectal cancer cells
Journal: Oncology Reports
doi: 10.3892/or.2023.8670
Figure Legend Snippet: Molecular mechanism exploration and animal experiments in vivo . (A) Intracellular expression of ABCB1, MYCN and CARM1 was detected by western blotting. Expression of ABCB1 was significantly increased in the RPF2 group (P<0.05) and decreased in the shRPF2i group (P<0.01). expression of MYCN was significantly increased in the RPF2 group (P<0.015 and decreased in the shRPF2i group (P<0.05). While the expression of CARM1 did not seem to be affected (P>0.05). (B) Co-immunoprecipitation found the presence of CARM1 co-immunoprecipitation with MYCN and that the formation of CARM1-MYCN complex was increased in the RPF2 group and decreased in the shRPF2i group. (C) After cisplatin treatment, the tumor volume as well as the mass of the mice in the shRPF2i group decreased relative to the shCtrl group. (weight: P<0.001; volume: P<0.01). *P<0.05; **P<0.01; ***P<0.001; ns, not significant. ABC, ATP-binding cassette; MYCN, N-myc proto-oncogene protein; CARM1, coactivator-associated arginine methyltransferase 1; sh, short hairpin; RPF2, ribosome production factor 2 homolog.
Techniques Used: In Vivo, Expressing, Western Blot, Immunoprecipitation, Binding Assay
Figure Legend Snippet: Functional recovery and validation experiments in vitro . (A) RKO cell viability at 0 h after plate spreading was detected using MTS reagent as a control. Normal serum-containing medium, CARM1 inhibitor (2 µg/ml) + serum-containing medium, cisplatin (21 µM) + serum-containing medium and CARM1 inhibitor (2 µg/ml) + cisplatin (21 µM) + serum-containing medium were added to the plates, respectively. cell viability was detected after incubation for 24 h at 37°C, respectively. There was no significant difference in the growth of the cell groups after incubation with CARM1 inhibitor alone (P>0.05). After CARM1 inhibition, cisplatin resistance was suppressed in all groups of cells. The degree of cisplatin resistance in the RPF2 group after CARM1 inhibition was not significantly different from the remaining two groups. (B) After CARM1 inhibitor incubation followed by cisplatin incubation, the number of cell clone-forming lines was significantly lower compared with the direct addition of cisplatin and there was no longer a significant difference in the RPF2 group compared with the other two groups. (C) The results of protein blotting suggested that the CARM1 inhibitor successfully reduced CARM1 expression in the cells. At the same time, ABCB1 and MYCN expression was similarly inhibited. RPF2 expression was unchanged. ****P<0.0001; ns, not significant. MTS, 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium; CARM1, coactivator-associated arginine methyltransferase 1; RPF2, ribosome production factor 2 homolog; ABC, ATP-binding cassette; MYCN, N-myc proto-oncogene protein; sh, short hairpin.
Techniques Used: Functional Assay, Biomarker Discovery, In Vitro, Control, Incubation, Inhibition, Expressing, Binding Assay



