ptmscan method Search Results


93
Cell Signaling Technology Inc custom adma antibody
Pharmacology of arginine methylation with type I PRMT inhibition. Schematic of arginine methylation mediated by PRMTs and mechanism of type I PRMT inhibition. The left side of the figure shows normal arginine methylation and the right side illustrates the decrease in <t>ADMA</t> with a concomitant increase in MMA <t>and</t> <t>SDMA</t> upon type I PRMT inhibition.
Custom Adma Antibody, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ptmscan+method/PTMScan+Asymmetric+Di-Methyl+Arginine+Motif+%5Badme-R%5D+Kit/pmc07746746-193-40-45
Average 93 stars, based on 1 article reviews
custom adma antibody - by Bioz Stars, 2026-09
93/100 stars
  Buy from Supplier

94
Cell Signaling Technology Inc anti succinyl lysine antibody bead conjugate
Pharmacology of arginine methylation with type I PRMT inhibition. Schematic of arginine methylation mediated by PRMTs and mechanism of type I PRMT inhibition. The left side of the figure shows normal arginine methylation and the right side illustrates the decrease in <t>ADMA</t> with a concomitant increase in MMA <t>and</t> <t>SDMA</t> upon type I PRMT inhibition.
Anti Succinyl Lysine Antibody Bead Conjugate, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ptmscan+method/PTMScan+Succinyl-Lysine+Motif+%5BSucc-K%5D+Kit/pmc06306174-74-22-28
Average 94 stars, based on 1 article reviews
anti succinyl lysine antibody bead conjugate - by Bioz Stars, 2026-09
94/100 stars
  Buy from Supplier

Image Search Results


Pharmacology of arginine methylation with type I PRMT inhibition. Schematic of arginine methylation mediated by PRMTs and mechanism of type I PRMT inhibition. The left side of the figure shows normal arginine methylation and the right side illustrates the decrease in ADMA with a concomitant increase in MMA and SDMA upon type I PRMT inhibition.

Journal: Scientific Reports

Article Title: Identification of hnRNP-A1 as a pharmacodynamic biomarker of type I PRMT inhibition in blood and tumor tissues

doi: 10.1038/s41598-020-78800-6

Figure Lengend Snippet: Pharmacology of arginine methylation with type I PRMT inhibition. Schematic of arginine methylation mediated by PRMTs and mechanism of type I PRMT inhibition. The left side of the figure shows normal arginine methylation and the right side illustrates the decrease in ADMA with a concomitant increase in MMA and SDMA upon type I PRMT inhibition.

Article Snippet: 12 mg total protein for each sample was desalted over SEP PAK C18 columns and split into 3–4 mg aliquots for enrichment with MMA motif [mme-RG] immunoaffinity beads (CST, #12235), a mixture immunoaffinity beads conjugated to ADMA motif [adme-R] and custom ADMA antibody (clone D10F7A10) (CST, #13474; modified method), and SDMA motif [sdme-RG] immunoaffinity beads (CST, #13563).

Techniques: Methylation, Inhibition

Effects of type I PRMT inhibition in human PBMCs. Western Blot analysis of monomethyl-arginine (MMA), symmetric dimethyl arginine (SDMA), asymmetric dimethyl arginine (ADMA), PRMT1 and PRMT5 (NC, non-cultured, NS, non-stimulated, TCR act , T Cell Receptor activated) ( A ) and RT-PCR for several PRMTs ( B ) in non-stimulated and TCR-activated human PBMCs from healthy donors treated with either DMSO or 2 µM GSK3368712 for 72 h (two-tailed Student’s t test: * p < 0.05, ** p < 0.01, *** p < 0.001; n.s., not significant). ( C–E ) MethylScan analysis of arginine methylation in human PBMCs treated with GSK3368712. ( C ) Venn diagram representation of proteins modulated by the type I PRMT inhibitor at MMA, ADMA and SDMA sites across four healthy donors. ( D ) Common set of proteins where a decrease in ADMA and concomitant increase in MMA and SDMA was observed in all 4 donors. ( E ) Pathway analysis of all proteins that underwent any change (> 2.5 fold) in arginine methylation upon treatment with GSK3368712, compared to DMSO. FDR, False Discovery Rate.

Journal: Scientific Reports

Article Title: Identification of hnRNP-A1 as a pharmacodynamic biomarker of type I PRMT inhibition in blood and tumor tissues

doi: 10.1038/s41598-020-78800-6

Figure Lengend Snippet: Effects of type I PRMT inhibition in human PBMCs. Western Blot analysis of monomethyl-arginine (MMA), symmetric dimethyl arginine (SDMA), asymmetric dimethyl arginine (ADMA), PRMT1 and PRMT5 (NC, non-cultured, NS, non-stimulated, TCR act , T Cell Receptor activated) ( A ) and RT-PCR for several PRMTs ( B ) in non-stimulated and TCR-activated human PBMCs from healthy donors treated with either DMSO or 2 µM GSK3368712 for 72 h (two-tailed Student’s t test: * p < 0.05, ** p < 0.01, *** p < 0.001; n.s., not significant). ( C–E ) MethylScan analysis of arginine methylation in human PBMCs treated with GSK3368712. ( C ) Venn diagram representation of proteins modulated by the type I PRMT inhibitor at MMA, ADMA and SDMA sites across four healthy donors. ( D ) Common set of proteins where a decrease in ADMA and concomitant increase in MMA and SDMA was observed in all 4 donors. ( E ) Pathway analysis of all proteins that underwent any change (> 2.5 fold) in arginine methylation upon treatment with GSK3368712, compared to DMSO. FDR, False Discovery Rate.

Article Snippet: 12 mg total protein for each sample was desalted over SEP PAK C18 columns and split into 3–4 mg aliquots for enrichment with MMA motif [mme-RG] immunoaffinity beads (CST, #12235), a mixture immunoaffinity beads conjugated to ADMA motif [adme-R] and custom ADMA antibody (clone D10F7A10) (CST, #13474; modified method), and SDMA motif [sdme-RG] immunoaffinity beads (CST, #13563).

Techniques: Inhibition, Western Blot, Cell Culture, Reverse Transcription Polymerase Chain Reaction, Two Tailed Test, Methylation

Mass Spectrometry analysis of hnRNP-A1 immunoprecipitated from Toledo cells treated with GSK3368712. (A) Amino acid sequence 180–240 of human hnRNP-A1 (* methylated arginine residues identified by MS). ( B, C and D ) Chromatographic representation of the methylation forms found at arginine residues 194, 206 and R225 and their relative changes induced by treatment with the type I PRMT inhibitor GSK3368712 (2 µM) for 48 h. 0MA, unmethylated arginine. MMA, monomethylated arginine. DMA, dimethylated arginine. ( E, F and G ) Relative levels of asymmetric dimethylarginine (ADMA) and symmetric dimethylarginine (SDMA) with respect to total dimethylarginine 194, 206 and 225 based on generation of diagnostic neutral loss fragment ions.

Journal: Scientific Reports

Article Title: Identification of hnRNP-A1 as a pharmacodynamic biomarker of type I PRMT inhibition in blood and tumor tissues

doi: 10.1038/s41598-020-78800-6

Figure Lengend Snippet: Mass Spectrometry analysis of hnRNP-A1 immunoprecipitated from Toledo cells treated with GSK3368712. (A) Amino acid sequence 180–240 of human hnRNP-A1 (* methylated arginine residues identified by MS). ( B, C and D ) Chromatographic representation of the methylation forms found at arginine residues 194, 206 and R225 and their relative changes induced by treatment with the type I PRMT inhibitor GSK3368712 (2 µM) for 48 h. 0MA, unmethylated arginine. MMA, monomethylated arginine. DMA, dimethylated arginine. ( E, F and G ) Relative levels of asymmetric dimethylarginine (ADMA) and symmetric dimethylarginine (SDMA) with respect to total dimethylarginine 194, 206 and 225 based on generation of diagnostic neutral loss fragment ions.

Article Snippet: 12 mg total protein for each sample was desalted over SEP PAK C18 columns and split into 3–4 mg aliquots for enrichment with MMA motif [mme-RG] immunoaffinity beads (CST, #12235), a mixture immunoaffinity beads conjugated to ADMA motif [adme-R] and custom ADMA antibody (clone D10F7A10) (CST, #13474; modified method), and SDMA motif [sdme-RG] immunoaffinity beads (CST, #13563).

Techniques: Mass Spectrometry, Immunoprecipitation, Sequencing, Methylation, Diagnostic Assay