Frigoribacterium sp. NBH87: F1C15_14970
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Entry
F1C15_14970 CDS
T06748
Symbol
rsgA
Name
(GenBank) ribosome small subunit-dependent GTPase A
KO
K06949
ribosome biogenesis GTPase / thiamine phosphate phosphatase [EC:3.6.1.-
3.1.3.100
]
Organism
frn
Frigoribacterium sp. NBH87
Pathway
frn00730
Thiamine metabolism
frn01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
frn00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
F1C15_14970 (rsgA)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03009 Ribosome biogenesis [BR:
frn03009
]
F1C15_14970 (rsgA)
Enzymes [BR:
frn01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.100 thiamine phosphate phosphatase
F1C15_14970 (rsgA)
Ribosome biogenesis [BR:
frn03009
]
Prokaryotic type
GTPases
F1C15_14970 (rsgA)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
RsgA_GTPase
MMR_HSR1
FeoB_N
ABC_tran
AAA_16
AAA_29
AAA_22
AAA_33
Dynamin_N
ABC_ATPase
ATP-synt_ab
Septin
AIG1
nSTAND1
Motif
Other DBs
NCBI-ProteinID:
QNE44945
UniProt:
A0A7G6Z2I0
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Position
complement(3216442..3217569)
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AA seq
375 aa
AA seq
DB search
MSWWSEVEGDADDEAYGEYDESSVRVRPNPKANRPRTKQRPAYDQAEEGVVWTVDRGRYG
VLMDAGTPDEREITTARARELGKKSVVTGDRVGVVGDTSGAEGSLARIVKVQERTTLLRR
SADDSDAVERVIVANADQMLIVVAAADPEPRPRLVDRYMVAAFDAGVEPILCITKTDLAD
PAPFAAHFACLDLRIVTTTSTSFDPLPDGSPSPVLDELRELLDGHVTVTVGHSGVGKSTL
VNALTGSQREVGVVNAVTGRGRHTSSSTVSFKVPSGGWIVDTPGVRSFGLGHVDPENILK
AFAAHALPADGPAPDGIPLAEAHDWEIVDRVEAGELGETGRERLRSLQTLLASKGGVSGR
DQAARDDDARGDEQP
NT seq
1128 nt
NT seq
+upstream
nt +downstream
nt
atgagctggtggagcgaggtcgagggcgacgccgacgacgaggcgtacggcgagtacgac
gagagctcggtgcgcgtgcgcccgaacccgaaggccaaccggccgcgcacgaagcagcgg
ccggcgtatgaccaggccgaggagggcgtcgtctggacggtcgaccgcggccgctacggc
gtgctgatggacgccggcacccccgacgagcgcgagatcacgaccgcccgggcccgcgag
ctgggcaagaagagcgtcgtgacgggcgaccgcgtcggcgtcgtcggcgacacgagcggt
gccgagggctcgctggcccgcatcgtgaaggtgcaggagcgcacgacgctgctgcggcgc
agcgccgacgacagcgacgccgtcgagcgcgtgatcgtggcgaacgccgaccagatgctg
atcgtcgtggccgcggccgaccccgagccgcgcccccgcctcgtcgaccgctacatggtg
gccgcgttcgacgcgggcgtcgagccgatcctctgcatcacgaagaccgacctcgccgac
ccggcgccgttcgccgcgcacttcgcgtgcctcgacctgcggatcgtgacgaccacctcc
acgtcgttcgacccgctgcccgacggctcgccgtcgcccgtgctcgacgagctgcgcgag
ctgctcgacggccacgtgacggtcaccgtggggcactcgggcgtcggcaagtcgacgctc
gtgaacgcgttgaccggctcgcagcgcgaggtcggcgtggtgaacgccgtgaccgggcgc
gggcggcacacgtcgtcgtcgacggtgtcgttcaaggtcccgagcggcggctggatcgtc
gacacccccggcgtgcggtcgttcggcctcggccacgtcgaccccgagaacatcctcaag
gcgttcgcggcgcacgcgctgcccgccgacgggcccgcgcccgacgggatccccctcgcc
gaggcccacgactgggagatcgtcgaccgcgtcgaggccggcgagctcggcgagaccggg
cgcgagcggctccggtcgctgcagacgctgctcgcctcgaagggcggggtcagcggccgc
gaccaggccgcgcgcgacgacgacgcccgcggcgacgagcagccgtag
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