Engineered SAM synthetases for enzymatic generation of AdoMet analogs with photocaging groups and reversible DNA modification in cascade reactions

Michailidou F, Klöcker N, Cornelissen NV, Singh RK, Peters A, Ovcharenko A, Kümmel D, Rentmeister A

Research article (journal) | Peer reviewed

Abstract

Methylation and demethylation of DNA, RNA and proteins has emerged as a major regulatory mechanism. Studying the function of these modifications would benefit from tools for their site‐specific inhibition and timed removal.S‐Adenosyl‐L‐methionine (AdoMet) analogs in combination with methyltransferases (MTases) have proven useful to map or block and release MTase target sites, however their enzymatic generation has been limited to aliphatic groups at the sulfur atom. We engineered a SAM synthetase fromCryptosporidium hominis(PC‐ChMAT) for efficient generation of AdoMet analogs with photocaging groups that are not accepted by any WT MAT reported to date. The crystal structure of PC‐ChMAT at 1.87 Å revealed how the photocaged AdoMet analog is accommodated and guided engineering of a thermostable MAT fromMethanocaldococcus jannaschii. PC‐MATs were compatible with DNA...

Details about the publication

JournalAngewandte Chemie International Edition (Angew. Chem. Int. Ed.)
Volume60
Issue1
Page range480-485
StatusPublished
Release year2021 (04/01/2021)
Language in which the publication is writtenEnglish
DOI10.1002/anie.202012623

Authors from the University of Münster

Kümmel, Daniel
Professorship for biochemistry and structural biology (Prof. Kümmel)
Rentmeister, Andrea
Professorship for Biomolecular Label Chemistry (Prof. Rentmeister)