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Human Methyltransferase

Updated: 2026-08-05

Overview

Human methyltransferases are a class of enzymes that transfer methyl groups (-CH3) to DNA, RNA, proteins, or small molecules, modulating biological functions such as gene silencing and signal transduction. They are categorized by substrate specificity (e.g., DNA methyltransferases like DNMT1/DNMT3A, or protein methyltransferases like PRMTs). These enzymes are pivotal in epigenetic regulation, with implications in development, cancer, and neurological disorders. Research-grade methyltransferases are commonly produced via recombinant expression in E. coli or mammalian cells, followed by purification. Commercial variants may include wild-type or mutant forms, often sold with optimized reaction buffers for experimental use.

Physical and Chemical Properties

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Methyltransferases exhibit diverse structural features, typically comprising catalytic domains (e.g., SET domains in histone methyltransferases) and cofactor-binding sites (e.g., S-adenosylmethionine, SAM). Their molecular weights range widely; for example, DNMT1 is ~183 kDa, while PRMT5 is ~72 kDa. Activity is pH- and temperature-dependent, with most functioning optimally at neutral pH (7.0–7.5) and 25–37°C. Stability varies: lyophilized powders may retain activity for years at -80°C, while liquid formulations often require glycerol or similar stabilizers. Purity is assessed via SDS-PAGE (>90% common for research use).

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Main Applications

In epigenetics, methyltransferases are tools to study DNA/histone methylation patterns, often used in chromatin immunoprecipitation (ChIP) or sequencing (e.g., MeDIP-seq). Drug discovery leverages them to screen inhibitors for cancer therapies (e.g., DNMT inhibitors azacitidine). Biotechnological applications include synthetic biology for pathway engineering, where methyltransferases modify metabolic intermediates. Diagnostic kits may incorporate these enzymes to detect methylation biomarkers for diseases like leukemia. Industrial uses are emerging, such as enzyme-coupled biosensors.

Safety and Storage

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Most research-grade methyltransferases are non-hazardous but require sterile handling to prevent contamination. Use gloves and cold storage; some formulations contain preservatives (e.g., sodium azide) requiring caution. Long-term storage at -80°C in aliquots is recommended. Avoid repeated freeze-thaw cycles—lyophilized enzymes are more stable but require reconstitution per vendor protocols. Activity assays should confirm stability post-thaw. Shipping often uses dry ice; confirm courier compliance for biological materials.

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B2B Procurement Guide

Procure methyltransferases from reputable suppliers (e.g., Sigma-Aldrich, Abcam, Cayman Chemical) with certificates of analysis (CoA) for activity and endotoxin levels. Key specifications include units of activity (e.g., pmol/min/µg), purity (≥90%), and absence of nucleases/proteases. Bulk buyers should negotiate batch consistency and scalability—some vendors offer custom expression systems. Lead times vary: 2–6 weeks for specialty enzymes. Consider licensing for commercial use (e.g., therapeutic production). Prices scale inversely with quantity; academic discounts may apply.

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