Riemerella anatipestifer RA-CH-1: B739_1870
Help
Entry
B739_1870 CDS
T02331
Name
(GenBank) hypothetical protein
KO
K00757
uridine phosphorylase [EC:
2.4.2.3
]
Organism
rag
Riemerella anatipestifer RA-CH-1
Pathway
rag00240
Pyrimidine metabolism
rag01100
Metabolic pathways
rag01232
Nucleotide metabolism
Brite
KEGG Orthology (KO) [BR:
rag00001
]
09100 Metabolism
09104 Nucleotide metabolism
00240 Pyrimidine metabolism
B739_1870
Enzymes [BR:
rag01000
]
2. Transferases
2.4 Glycosyltransferases
2.4.2 Pentosyltransferases
2.4.2.3 uridine phosphorylase
B739_1870
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
PNP_UDP_1
HATPase_c_5
DUF2800
Motif
Other DBs
NCBI-ProteinID:
AFR36454
UniProt:
J9R3K4
LinkDB
All DBs
Position
1951415..1952269
Genome browser
AA seq
284 aa
AA seq
DB search
MLNKLAASELVLNEDGSVYHLNLLPEDIAEKIILVGDPDRVPKVSKYFDKIEIKKNKREF
YTHTGTLRGERITVMSSGIGTENIDIVMNELDALVNIDLKNKEFKSEHTALQLFRLGTCG
SVNPDIEVDNMLVTQNVVGLDGLLHFYQDYQFENEFSRNFLEKFPYEKIKSMLYFSDWAE
DISDYYKDAKYHGNTATFPGFYAPQGRQLRLKAVDENFLETLNDLGVSNFEMETSAIYGL
SKLLGHKALTVNCVIANRRRGEFSADHHSSEKNMIEWVLDRIIK
NT seq
855 nt
NT seq
+upstream
nt +downstream
nt
atgcttaataagttagctgcatcagaactggtgcttaatgaagacggaagtgtgtatcat
cttaatttgcttccagaggatattgcagaaaaaataattttggtaggagacccagaccgt
gttcctaaggtttccaaatattttgacaagatagaaatcaaaaagaacaaaagggaattc
tatacacatacaggaacgcttagaggagaaagaattacggtaatgtcatcaggtataggt
actgagaatatagacatcgtaatgaatgagctagatgccttggtaaatattgatttgaaa
aataaagaattcaagtcagagcatactgcgttacagttgttccgtttaggaacttgtggt
agtgtaaatcctgatatagaggtagataatatgctggtaactcaaaatgtggtgggactt
gacggtttgttacatttctaccaagactatcagtttgaaaatgaattttctagaaatttc
ttagaaaagttcccttatgagaaaataaaatcaatgctttatttttcagattgggcagaa
gatatttcagattattacaaagatgctaaataccacggaaacacagctactttccctgga
ttctatgctccacaaggaagacagctaaggcttaaagccgtagatgaaaacttcttagaa
acccttaacgatttaggagtttctaactttgagatggaaacttccgcaatctatggtcta
tcaaagctacttggtcataaagctcttaccgtgaactgtgtaattgccaaccgccgtaga
ggtgagttttctgctgaccaccactcttcagaaaaaaatatgatagaatgggtgttggat
aggattattaaataa
DBGET
integrated database retrieval system