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Crystallographic capture of a radical S-adenosylmethionine enzyme in the act of modifying tRNA.


ABSTRACT: RlmN is a dual-specificity RNA methylase that modifies C2 of adenosine 2503 (A2503) in 23S rRNA and C2 of adenosine 37 (A37) in several Escherichia coli transfer RNAs (tRNAs). A related methylase, Cfr, modifies C8 of A2503 via a similar mechanism, conferring resistance to multiple classes of antibiotics. Here, we report the x-ray structure of a key intermediate in the RlmN reaction, in which a Cys(118)?Ala variant of the protein is cross-linked to a tRNA(Glu)substrate through the terminal methylene carbon of a formerly methylcysteinyl residue and C2 of A37. RlmN contacts the entire length of tRNA(Glu), accessing A37 by using an induced-fit strategy that completely unfolds the tRNA anticodon stem-loop, which is likely critical for recognition of both tRNA and ribosomal RNA substrates.

SUBMITTER: Schwalm EL 

PROVIDER: S-EPMC5629962 | biostudies-literature | 2016 Apr

REPOSITORIES: biostudies-literature

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Crystallographic capture of a radical S-adenosylmethionine enzyme in the act of modifying tRNA.

Schwalm Erica L EL   Grove Tyler L TL   Booker Squire J SJ   Boal Amie K AK  

Science (New York, N.Y.) 20160401 6283


RlmN is a dual-specificity RNA methylase that modifies C2 of adenosine 2503 (A2503) in 23S rRNA and C2 of adenosine 37 (A37) in several Escherichia coli transfer RNAs (tRNAs). A related methylase, Cfr, modifies C8 of A2503 via a similar mechanism, conferring resistance to multiple classes of antibiotics. Here, we report the x-ray structure of a key intermediate in the RlmN reaction, in which a Cys(118)→Ala variant of the protein is cross-linked to a tRNA(Glu)substrate through the terminal methyl  ...[more]

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