Modification-Class Recognition
Recognize a defined PTM class across multiple protein or peptide sequence contexts, supporting broad detection and enrichment beyond a single target protein.
Pan PTM antibodies recognize defined post-translational modification classes across multiple protein and peptide contexts. MtoZ Biolabs provides IP-MS validated antibodies for phosphorylation, lysine acylation, methylation, O-GlcNAcylation, oxidative modifications, and other PTMs, supporting Western blotting, immunoprecipitation, immunoaffinity enrichment, and mass spectrometry-based PTM studies.
For projects extending from PTM detection to modification-site profiling, MtoZ Biolabs also provides downstream PTM proteomics services, including antibody-based enrichment, high-resolution LC-MS/MS, modified peptide identification, and site-level data analysis.

MtoZ Biolabs offers IP-MS validated pan PTM antibodies for modification-class detection and enrichment, with product options supporting Western blotting, immunoprecipitation, immunoaffinity enrichment, and downstream LC-MS/MS analysis. Our pan PTM antibody portfolio covers phosphorylation, lysine acylation, methylation, O-GlcNAcylation, oxidative modifications, cysteine modifications, and emerging metabolite-derived PTMs. Available formats include monoclonal and other antibody options, with supported applications varying by product.
Recognize a defined PTM class across multiple protein or peptide sequence contexts, supporting broad detection and enrichment beyond a single target protein.
Enrich modified proteins or peptides from complex biological samples to improve access to low-abundance PTM signals before downstream analysis.
Support PTM detection at the protein level and immunoaffinity enrichment workflows designed for modified protein or peptide analysis.
Suitable for enrichment workflows that continue to high-resolution LC-MS/MS for modified peptide identification and PTM site profiling.
Selected products from the MtoZ Biolabs pan PTM antibody portfolio. Product availability and supported applications vary by modification class and antibody format.
IP · Co-IP · IP-MS compatible
Pan PTM antibodies support modification-class detection, enrichment, and mass spectrometry-based profiling across major areas of molecular, cellular, and metabolic research.
Profile phosphorylation patterns and enrich phospho-serine, phospho-threonine, or phospho-tyrosine proteins and peptides involved in receptor, kinase, and downstream signaling pathways.
Study lysine acetylation, methylation, crotonylation, lactylation, and related histone or non-histone modifications associated with chromatin organization and transcriptional regulation.
Investigate metabolite-derived PTMs such as acetylation, succinylation, malonylation, glutarylation, β-hydroxybutyrylation, lactylation, and 2-hydroxyisobutyrylation.
Examine PTM changes linked to immune-cell activation and inflammatory metabolism, including lactylation, itaconyl-cysteine modification, phosphorylation, acetylation, and O-GlcNAcylation.
Detect and enrich stress-associated modifications such as 3-nitrotyrosine and selected cysteine modifications to study oxidative, electrophilic, or metabolic stress responses.
Use pan PTM antibodies for global comparison of modification abundance, enrichment of low-abundance modified species, and downstream LC-MS/MS-based PTM site profiling.
For projects extending beyond antibody selection, MtoZ Biolabs provides downstream PTM proteomics services covering immunoaffinity enrichment, high-resolution LC-MS/MS, modified peptide identification, and PTM site-level data analysis.
Key considerations for pan PTM antibody selection, immunoaffinity enrichment, and downstream mass spectrometry workflows.
Selecting the right antibody depends on target specificity, sample species, antibody format, host species, application, validation method, and downstream experimental goals. Use our product filter to quickly identify antibody products that match your experimental requirements.
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