RRC ID 74375
Author Gyuhyeok Cho, Jangmin Lee, Jungwook Kim
Title Identification of a novel 5-aminomethyl-2-thiouridine methyltransferase in tRNA modification
Journal Nucleic Acids Research
Abstract The uridine at the 34th position of tRNA, which is able to base pair with the 3′-end codon on mRNA, is usually modified to influence many aspects of decoding properties during translation. Derivatives of 5-methyluridine (xm5U), which include methylaminomethyl (mnm-) or carboxymethylaminomethyl (cmnm-) groups at C5 of uracil base, are widely conserved at the 34th position of many prokaryotic tRNAs. In Gram-negative bacteria such as Escherichia coli, a bifunctional MnmC is involved in the last two reactions of the biosynthesis of mnm5(s2)U, in which the enzyme first converts cmnm5(s2)U to 5-aminomethyl-(2-thio)uridine (nm5(s2)U) and subsequently installs the methyl group to complete the formation of mnm5(s2)U. Although mnm5s2U has been identified in tRNAs of Gram-positive bacteria and plants as well, their genomes do not contain an mnmC ortholog and the gene(s) responsible for this modification is unknown. We discovered that MnmM, previously known as YtqB, is the methyltransferase that converts nm5s2U to mnm5s2U in Bacillus subtilis through comparative genomics, gene complementation experiments, and in vitro assays. Furthermore, we determined X-ray crystal structures of MnmM complexed with anticodon stem loop of tRNAGln. The structures provide the molecular basis underlying the importance of U33-nm5s2U34-U35 as the key determinant for the specificity of MnmM.
Volume 51
Pages 1971-1983
Published 2023-2-28
DOI 10.1093/nar/gkad048
PMID 36762482
PMC PMC9976899
MeSH Escherichia coli / genetics Escherichia coli Proteins* Methyltransferases* Multienzyme Complexes* / genetics RNA, Transfer / genetics Thiouridine Uridine / chemistry
IF 11.502
Resource
Prokaryotes E. coli JW3719-KC JW5380-KC ME9062(BW25113)