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A general strategy for direct, enzyme-catalyzed conjugation of functional compounds to DNA. | LitMetric

AI Article Synopsis

  • Methyltransferase enzymes can add specific modifications to large DNA molecules efficiently, but previous methods had limitations due to complex chemical synthesis for cofactor analogues.
  • A new method allows for the direct transfer of various functional compounds, like fluorescent dyes and biotin, to DNA in a single reaction without purification.
  • This approach enhances the efficiency of fluorophore attachment and reveals that modifications mainly occur on one DNA strand, with a slight chance of off-site labeling.

Article Abstract

The methyltransferase enzymes can be applied to deliver a range of modifications to pre-determined sites on large DNA molecules with exceptional specificity and efficiency. To date, however, a limited number of modifications have been delivered in this way because of the complex chemical synthesis that is needed to produce a cofactor analogue carrying a specific function, such as a fluorophore. Here, we describe a method for the direct transfer of a series of functional compounds (seven fluorescent dyes, biotin and polyethylene glycol) to the DNA duplex. Our approach uses a functional cofactor analogue, whose final preparative step is performed alongiside the DNA modification reaction in a single pot, with no purification needed. We show that fluorophore conjugation efficiency in these mixtures is significantly improved compared to two-step labeling approaches. Our experiments highlight the remarkable malleability and selectivity of the methyltransferases tested. Additional analysis using high resolution localization of the fluorophore distribution indicates that target sites for the methyltransferase are predominantly labeled on a single strand of their palindromic site and that a small and randomly-distributed probability of off-site labeling exists.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6009647PMC
http://dx.doi.org/10.1093/nar/gky184DOI Listing

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