MetaCyc Pathway: tRNA processing in Agrobacterium fabrum C58

Add experiment(s):


Reactions and Genes R2A with Strontium chloride 750 mM
remove
Ribonuclease E:
a polycistronic tRNA precursor + H2O→a polycistronic tRNA precursor + a tRNA precursor with a 5' extension and a long 3' trailer
(EC 3.1.26.12)
Atu1339 -0.4
Ribonuclease E:
a polycistronic tRNA precursor + H2O→a polycistronic tRNA precursor + a tRNA precursor with a 5' extension and a short 3' extension
(EC 3.1.26.12)
Atu1339 -0.4
Exoribonuclease II:
a tRNA precursor with a 5' extension and a long 3' trailer + H2O→a tRNA precursor with a 5' extension + a ribonucleoside 5'-monophosphate
(EC 3.1.13.1)
Atu1303 -0.1
Exoribonuclease II:
a tRNA precursor with a 5' extension and a long 3' trailer + n H2O→a tRNA precursor with a 5' extension and a short 3' extension + n a nucleoside 5'-monophosphate
(EC 3.1.13.1)
Atu1303 -0.1
Ribonuclease P:
a tRNA precursor with a 5' extension and a short 3' extension + H2O→a tRNA precursor with a short 3' extension + a tRNA fragment
(EC 3.1.26.5)
Atu0385 N.D.
tRNA nucleotidyltransferase:
a tRNA precursor with a 5' extension and a short 3' extension + n phosphate→a tRNA precursor with a 5' extension + a ribonucleoside diphosphate
(EC 2.7.7.56)
Atu0327 N.D.
Ribonuclease D:
a tRNA precursor with a 5' extension and a short 3' extension→a tRNA precursor with a 5' extension + a ribonucleoside 5'-monophosphate
(EC 3.1.13.5)
Atu1151 N.D.
Atu4108 -1.4
Ribonuclease P:
a tRNA precursor with a 5' extension + H2O→an uncharged tRNA + a tRNA fragment
(EC 3.1.26.5)
Atu0385 N.D.
tRNA nucleotidyltransferase:
a tRNA precursor with a short 3' extension + n phosphate→an uncharged tRNA + n a ribonucleoside diphosphate
(EC 2.7.7.56)
Atu0327 N.D.
Ribonuclease D:
a tRNA precursor with a short 3' extension→an uncharged tRNA + n a nucleoside 5'-monophosphate
(EC 3.1.13.5)
Atu1151 N.D.
Atu4108 -1.4

Links:

Candidate genes for each reaction are identified from best hits to MetaCyc; by matching EC numbers (which are assigned by TIGRFam, SEED, or best hits to KEGG); or by matching SEED roles to KEGG reactions to MetaCyc reactions. See the "Protein" tab of each gene for more information