Related Experiment Video
Updated: Jun 14, 2025

Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
Irreversible Inhibition of DNMT3A by an N-Mustard Analog of S-Adenosyl-L-Methionine
Nichanun Sirasunthorn1, Isabelle Roseto1, Lindsay Pecor1
1Department of Chemistry, Wake Forest University, Winston-Salem, NC, USA.
Abstract:
DNA methylation, an important epigenetic modification, is catalyzed by DNA methyltransferases and is essential in the regulation of gene expression. Here, the utility of an N-mustard analog designed to mimic the native methyl donor, S-adenosyl-L-methionine (SAM), was explored with the DNA methyltransferase 3A catalytic domain (DNMT3AC). In lieu of the expected analog transfer to DNA, methyltransferase activity was instead inhibited in a concentration dependent manner. Further investigation into the mechanism of analog inhibition did not reveal a typical competitive mechanism. Instead, mass spectrometry analysis provided direct evidence of two cysteine residues in the SAM binding site covalently modified by the SAM analog and confirmed its' function as an irreversible inhibitor of DNMT3AC.
Related Concept Videos
Eukaryotic Transcription Inhibitors
Eukaryotic transcription inhibitors usually contain two distinct domains, a...
Abnormal Proliferation
MicroRNAs
Experimental RNAi
DNA Damage can Stall the Cell Cycle
Phase II Reactions: Methylation Reactions
The mechanism of methylation unfolds in two stages. The first stage sees a methyltransferase enzyme facilitating the transfer of a methyl group from S-adenosylmethionine (SAM) to the substrate, forming S-adenosylhomocysteine (SAH). The second stage involves further metabolism of SAH into homocysteine, which can be recycled...

