Several genes encoding putative RNA:5-methylcytidine-transferases
(m5C-transferases) from different organisms,
including yeast, have been identified by sequence homology
with the recently identified 16S rRNA:m5C967-methyltransferase
(gene SUN) from Escherichia coli. One
of the yeast ORFs (YBL024w) was amplified by PCR, inserted
in the expression vector pET28b, and the corresponding
protein was hyperexpressed in E. coli BL21(DE3).
The resulting N-terminally His6-tagged recombinant
Ybl024p was purified to apparent homogeneity by one-step
affinity chromatography on Ni2+-NTA-agarose
column. The activity and substrate specificity of the purified
Ybl024p were tested in vitro using T7 transcripts of different
yeast tRNAs as substrates and S-adenosyl-L-methionine as
a donor of the methyl groups. The results indicate that
yeast ORF YBL024w encodes S-adenosyl-L-methionine-dependent
tRNA: m5C-methyltransferase that is capable
of methylating cytosine to m5C at several positions
in different yeast tRNAs and pre-tRNAs containing intron.
Modification of tRNA occurs at all four positions (34,
40, 48, and 49) at which m5C has been found
in yeast tRNAs sequenced so far. Disruption of the ORF
YBL024w leads to the complete absence of m5C
in total yeast tRNA. Moreover no tRNA:m5C-methyltransferase
activity towards all potential m5C methylation
sites was detected in the extract of the disrupted yeast
strain. These results demonstrate that the protein product
of a single gene is responsible for complete m5C
methylation of yeast tRNA. Because this newly characterized
multisite-specific modification enzyme Ybl024p is the fourth
tRNA-specific methyltransferase identified in yeast, we
suggest designating it as TRM4, the gene corresponding
to ORF YBL024w.