KEGG   Priestia koreensis: IE339_22625
Entry
IE339_22625       CDS       T08027                                 
Name
(GenBank) flagellar hook-basal body protein
  KO
K02392  flagellar basal-body rod protein FlgG
Organism
pks  Priestia koreensis
Pathway
pks02040  Flagellar assembly
Brite
KEGG Orthology (KO) [BR:pks00001]
 09140 Cellular Processes
  09142 Cell motility
   02040 Flagellar assembly
    IE339_22625
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   02035 Bacterial motility proteins [BR:pks02035]
    IE339_22625
Bacterial motility proteins [BR:pks02035]
 Flagellar system
  Flagellar assembly proteins
   Rod and hook
    IE339_22625
SSDB
Motif
Pfam: Flg_bbr_C LlgE_F_G_D1 Flg_bb_rod
Other DBs
NCBI-ProteinID: UNL84854
LinkDB
Position
complement(4335551..4336387)
AA seq 278 aa
MNRSMINASNTMGQLQYQIDVIGDNLANVNTNGFKSRDVSFSDLLYQQFDNQPDQQKEQG
RLTPYGIRQGSGAKLSQTYLQMNQGSFIQTNRALDAALQQEDQFFQVRVNQDGQQVTQYT
RDGAFYISPNGTQSMLVDRDGNSVLDAAGNPIMFPQDATDVQITSSGALEVTTPAGKQSI
DLGIVQVSKPQLLEAKGNNHFQLPNLGAMNVTMADVLTPLAPGANRNGIVQTKALEQSNV
DVSQQMTNLTMAQKAYQFNARAISMSDQMMGLVNTIRS
NT seq 837 nt   +upstreamnt  +downstreamnt
gtgaatcgttcaatgattaatgcgtctaatacgatggggcagcttcagtatcagattgat
gttatcggtgataatttggcgaacgtcaatacaaacggttttaaaagcagggacgttagc
tttagtgaccttctttatcagcagtttgacaatcagcctgatcagcagaaggagcaggga
cgcctaacgccttatggaattcgtcaaggttccggtgcgaaactttcgcaaacctatctg
caaatgaatcagggctccttcattcaaacaaaccgtgctttagatgcagctcttcagcaa
gaggatcaattctttcaagtacgtgtgaatcaagacggtcaacaggtaacgcagtatacg
agagacggtgcgttttacatttcaccgaatggcacacagtctatgctggttgatcgagac
gggaattcagtgctagatgcagcaggaaatccgattatgtttccacaagacgcaacagac
gttcaaattacatcatcaggcgccttagaggttacaacaccggcagggaagcagtctatt
gatttgggaatcgttcaagtgagcaaaccacagctcttagaagcaaagggaaacaatcat
tttcagcttcctaacctaggagcaatgaatgtcacaatggctgatgtactcactcctcta
gcaccaggagcgaatcgtaatggtattgttcaaacgaaggcgctagaacagtcgaacgta
gacgtgagtcagcaaatgacaaacttaacgatggcacaaaaagcgtaccaattcaatgca
cgagcgatctccatgtctgatcaaatgatgggacttgtgaatacaatacgatcataa

DBGET integrated database retrieval system