Leisingera caerulea: K3721_09870
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Entry
K3721_09870 CDS
T08528
Name
(GenBank) trimethylamine methyltransferase family protein
KO
K14083
trimethylamine---corrinoid protein Co-methyltransferase [EC:
2.1.1.250
]
Organism
lcae
Leisingera caerulea
Pathway
lcae00680
Methane metabolism
lcae01100
Metabolic pathways
lcae01120
Microbial metabolism in diverse environments
lcae01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
lcae00001
]
09100 Metabolism
09102 Energy metabolism
00680 Methane metabolism
K3721_09870
Enzymes [BR:
lcae01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.250 trimethylamine---corrinoid protein Co-methyltransferase
K3721_09870
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Paralog
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GFIT
Motif
Pfam:
MTTB
Motif
Other DBs
NCBI-ProteinID:
UWQ55822
UniProt:
A0A9Q9M2M6
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Position
complement(2002863..2004404)
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AA seq
513 aa
AA seq
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MNADGHITQRGKSRRGRLTRHNAPQARPVYQRRRIPAYDLLDGTSLMSIECQADWILEHI
GVEFRGDDAALALFAGAGARVDGVRVRFEPGHVRQLCKTAPAKFQLHGRTPARTVTLGGD
SLVLMPGYGSPFVSDLEQGRRYATLEDFQNFVKLAHLAPALHHSGGTVVEPTDVPVNKRH
LDMMLAHLTLSDKPFMGGVTSAQAAWDSIEMARLAFGAEFLDQNAVMQANINVNSPLIYD
EVMSASLRIYAASNQCVCISPAIFAGAMGPLSPAAVSAQTLAEAMAGIALTQLVRPGCPV
VFGSFHSSLNLRTGALTFGSPEANLTTMALSQLGRRLGVPVRSGGGQVTASNAADGQAMQ
DSAGAMWATLLSGGHQVWHAAGWLEGGLVMSYEKFVMDLDHCGAMLKMLQGFGTDDEAFG
RDAYAEAGPGENFLSTGHTLRHYTTANFEPQVPEGGPFETWDENGRQTADQRAAARWRQM
LTEFQPPEMPEATRTALNDFVAERKSAMPDEWY
NT seq
1542 nt
NT seq
+upstream
nt +downstream
nt
atgaacgctgacggccatatcacccagcgcggaaagtcgcgccgggggcggctgacccgg
cataatgcaccgcaggcaaggccggtgtatcagcgccgccggattccagcgtatgacctg
ctggacggaacctcgctgatgagcatcgaatgccaggcggactggatcctggagcacatc
ggcgttgaattccgcggcgacgatgcagcgctggcgctgtttgccggggccggagcccgc
gtcgacggcgtccgggtccgctttgagccgggccatgtgcggcagctctgcaaaaccgcg
cccgccaaattccagctgcatggccgcacccccgcccgcaccgtgaccctgggtggcgac
agcctggtgctgatgcccggctacggctcgccctttgtctcggacctggagcaaggccgc
cgctatgccacgctggaggatttccagaacttcgtgaagctcgcgcatctcgcgcctgcg
ctgcaccactccggcggcaccgtggttgagccgactgacgtgccggtgaacaagcggcat
ctggacatgatgctggcgcatctcaccctgtcggataaacccttcatgggcggcgtcacc
tcggcccaggccgcctgggacagcattgagatggcccggctggcctttggcgcggagttt
ctcgaccagaacgcggtgatgcaggccaacatcaacgtcaactcgccgctgatctatgac
gaggtgatgtccgcatccctgcgcatctacgcggcgtcaaaccaatgcgtctgcatctcg
cccgccatttttgccggcgccatggggccgctctccccggctgcggtttccgcccagacc
ctggctgaggcgatggcgggcattgcgctgacgcagctggtgcgccctgggtgcccggtg
gtgttcggcagtttccattcctcgttgaacctgcgcaccggcgcgctgacctttgggtcg
cccgaagccaatctgaccaccatggcgctgagccagctgggccgcaggctgggggtgcca
gtgcgctccggcggcggccaggtcactgcctccaacgccgccgacggccaggcgatgcag
gacagcgccggtgcgatgtgggcaacccttctttccggcgggcatcaggtctggcacgcg
gcaggctggctcgaaggcgggctggtgatgtcctacgagaagttcgtgatggacctcgac
cattgcggcgcgatgctgaagatgctgcaggggtttggcacggacgacgaggcctttggc
cgtgatgcctacgccgaggccggtccgggcgaaaacttcctctccactggacacaccctg
cgccattacacaacagccaattttgaaccgcaggtgcccgaaggcggcccctttgaaacc
tgggacgagaacggccgccagaccgctgatcagcgggccgcggcccgatggcgtcagatg
ctgacggaatttcagccaccggaaatgccggaagccacccgcactgccctgaatgacttc
gtggcggagcgcaaatccgccatgcccgacgaatggtattga
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