An Enzymatic Platform for Late‐Stage (Radio)isotope Labelling of Oligonucleotides With Methyltransferases
Abstract
ABSTRACT The development of therapeutic nucleic acids has become a cornerstone of modern drug discovery. To support the clinical translation of these modalities, radiolabelled analogues are vital for absorption, distribution, metabolism and excretion (ADME) studies, particularly for quantitative whole‐body autoradiography (QWBA). Access to such radio probes is limited because established methods for the preparation of 3 H‐labelled oligonucleotides are characterised by high costs, extensive lead times, low specific activity and the generation of substantial radioactive waste. To address these limitations, we developed a biocatalytic platform for late‐stage 3 H‐radiolabelling of oligonucleotides using methyltransferases, reducing precursor costs and radioactive waste by orders of magnitude. We demonstrate that DNA‐cytosine‐5‐methyltransferases can methylate oligonucleotides with high regioselectivity at a preparative scale, yielding stable‐ and radioisotope‐labelled ( 2 H and 3 H) samples with an unprecedented molar activity up to 3 TBq mmol −1 (81 Ci mmol −1 ). In view of the precision and efficiency of methyltransferase‐mediated radiolabelling, we anticipate that similar approaches will facilitate QWBA studies with other drug modalities.
Article Details
Authors (4)
Christopher R. B. Swanson
Manchester Institute of Biotechnology, School of Chemistry, The University of Manchester, 131 Princess Street, M1 7DN Manchester, United Kingdom
Ulrich Kauhl
Therapeutic Modalities, Isotope Synthesis Roche Innovation Center Basel Basel Switzerland
Martin R. Edelmann
Therapeutic Modalities, Isotope Synthesis Roche Innovation Center Basel Basel Switzerland
Florian P. Seebeck
Department of Chemistry, University of Basel, Mattenstrasse 22, Basel 4002, Switzerland