Metapseudomonas furukawaii: KF707C_44810
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Entry
KF707C_44810 CDS
T07047
Name
(GenBank) ribosomal protein S12p Asp88 (E. coli) methylthiotransferase
KO
K14441
ribosomal protein S12 methylthiotransferase [EC:
2.8.4.4
]
Organism
pfuw
Metapseudomonas furukawaii
Brite
KEGG Orthology (KO) [BR:
pfuw00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:
pfuw03009
]
KF707C_44810
Enzymes [BR:
pfuw01000
]
2. Transferases
2.8 Transferring sulfur-containing groups
2.8.4 Transferring alkylthio groups
2.8.4.4 [ribosomal protein uS12] (aspartate89-C3)-methylthiotransferase
KF707C_44810
Ribosome biogenesis [BR:
pfuw03009
]
Prokaryotic type
ribosomal protein modification factors
KF707C_44810
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GFIT
Motif
Pfam:
Radical_SAM
TRAM_2
UPF0004
TRAM
CLP1_P
YajR_YAM
Motif
Other DBs
NCBI-ProteinID:
BAU76169
UniProt:
A0AAD1FHB1
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Position
4871419..4872741
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AA seq
440 aa
AA seq
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MSTATPKVGFVSLGCPKATVDSERILTQLRMEGYEIVPTYQDADVVVVNTCGFIDSAKAE
SLDAIGEAIAENGKVIVTGCMGVSEGSIRDVHPSVLAVTGPQQYEQVVNAVHEVVPPKAD
HDPFIDLVPPQGIKLTPRHYAYLKISEGCNHSCSFCIIPSMRGKLVSRPVGDVLSEAERL
VKAGVKELLVISQDTSAYGVDLKYKLDFWNGQPVKTRMLELCEALSAMGVWVRLHYVYPY
PNVDDVIPLMAEGKLLPYLDIPFQHASPKVLKSMKRPAFEDKTLARIKKWREICPDLTIR
STFIVGFPGETEEDFQYLLDWLSEAQLDRVGCFQYSPVDGAPANDLGLEPVPDEVKQERW
ERFMAHQQAISSARLQQKIGREMDVLIDEVDDEGAVARSWADAPEIDGSVFIESTTVKPG
DKVRVRIIDADEYDMWAELV
NT seq
1323 nt
NT seq
+upstream
nt +downstream
nt
atgtccaccgccacccccaaagtcggattcgtcagcctgggatgcccgaaggccacagtc
gactccgaacgcatcctcacccagctgcgcatggaaggttacgagatcgtaccgacctac
caggacgctgacgtggtggtggtgaatacctgcggtttcatcgacagcgccaaggccgaa
tccctggacgccatcggcgaggccatcgccgagaacggcaaggtgatcgtcaccggctgc
atgggcgtgtccgagggcagcatccgcgacgttcaccccagcgtgctcgcggtcaccggc
ccgcagcagtacgagcaggtggtcaacgccgtgcatgaggtggtgccgcccaaggccgac
cacgaccccttcatcgacctggttccgccccagggcatcaagctgaccccgcgtcactat
gcctacctgaagatttccgaaggctgcaaccacagctgcagcttctgcatcatcccctcc
atgcgcggcaagctggtcagccgcccggtcggcgacgtgctgtccgaagccgagcgcctg
gtcaaagccggcgtgaaagaactgctggtgatctcccaggacaccagcgcctacggcgtc
gacctgaagtacaagctggacttctggaacggccagccggtgaagacccgcatgctggag
ctgtgcgaggccctctccgccatgggcgtctgggtgcgcctgcactacgtctacccctat
cccaatgtggatgacgtcatcccgctgatggccgaaggcaagctgctgccctacctggac
atccccttccagcacgccagcccgaaagtgctcaagtccatgaagcgtccggccttcgag
gacaagaccctggcccgcatcaagaaatggcgcgagatctgcccggacctgaccatccgc
tccaccttcatcgtcggcttccccggcgagaccgaggaagatttccagtacctgctggac
tggctgagcgaagcccagctggaccgcgtcggctgcttccagtactccccggttgacggc
gccccggccaacgacctgggcctggagccggtgccggacgaggtcaagcaggagcgctgg
gagcgcttcatggcccaccagcaggccatctcctccgcccgcctgcagcaaaagatcggc
cgcgagatggatgtgctgatcgatgaagtggacgacgaaggcgccgtggcacgctcctgg
gcggacgcaccggagatcgacggcagcgtgttcatcgaatccaccaccgtgaaaccgggt
gacaaggtgcgcgttcgcatcatcgatgccgacgaatacgacatgtgggccgaactggtc
tga
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