KEGG   Tsuneonella flava: IDJ81_13320
Entry
IDJ81_13320       CDS       T07616                                 
Symbol
tuf
Name
(GenBank) elongation factor Tu
  KO
K02358  elongation factor Tu
Organism
tfv  Tsuneonella flava
Brite
KEGG Orthology (KO) [BR:tfv00001]
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03012 Translation factors [BR:tfv03012]
    IDJ81_13320 (tuf)
   03029 Mitochondrial biogenesis [BR:tfv03029]
    IDJ81_13320 (tuf)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:tfv04147]
    IDJ81_13320 (tuf)
Translation factors [BR:tfv03012]
 Eukaryotic type
  Elongation factors
   IDJ81_13320 (tuf)
 Prokaryotic type
   IDJ81_13320 (tuf)
Mitochondrial biogenesis [BR:tfv03029]
 Mitochondrial DNA transcription, translation, and replication factors
  Mitochondrial transcription and translation factors
   Mitochondrial translation factors
    IDJ81_13320 (tuf)
Exosome [BR:tfv04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   IDJ81_13320 (tuf)
  Exosomal proteins of breast cancer cells
   IDJ81_13320 (tuf)
  Exosomal proteins of colorectal cancer cells
   IDJ81_13320 (tuf)
SSDB
Motif
Pfam: GTP_EFTU GTP_EFTU_D3 GTP_EFTU_D2 MMR_HSR1 cobW
Other DBs
NCBI-ProteinID: QSB44283
LinkDB
Position
complement(2835667..2836842)
AA seq 391 aa
MAKEKFERNKPHCNIGTIGHVDHGKTTLTAAITKVQGSAVDFANIDKAPEERERGITIST
AHVEYETDARHYAHVDCPGHADYVKNMITGAAQMDGAILVVNAADGPMPQTREHILLARQ
VGVPALVVYMNKVDQVDDEEILELVELEVRELLSSYDFDGDNIPIIKGSALAALEGRDPE
IGENSIKELMKAVDEYIPQPDRPVDQAFLMPIEDVFSISGRGTVVTGRVETGVVNVGDEV
EIVGIKDTKKTTVTGVEMFRKLLDRGEAGDNIGALIRGVGREEVERGQVLAKPGSVNPHT
DFEAEVYVLSKDEGGRHTPFFANYRPQFYFRTTDVTGEVVLPEGTEMVMPGDNVSIGVKL
IAPIAMDEGLRFAIREGGRTVGSGVVAKITK
NT seq 1176 nt   +upstreamnt  +downstreamnt
atggccaaggaaaaattcgagcggaacaaaccgcactgcaacatcggcaccatcggtcac
gtcgaccacggcaagaccacgctgactgccgccatcaccaaggtgcagggctccgcggtt
gatttcgcgaacatcgacaaggctccggaagagcgtgagcgcgggatcaccatctcgacc
gcacacgttgaatacgaaaccgatgcgcgccactacgcacacgtcgactgcccggggcac
gccgactacgtgaagaacatgatcaccggtgcagcccagatggacggcgctatccttgtt
gtgaacgctgctgacggcccgatgccgcagacccgcgagcacatcctgcttgctcgccag
gtcggcgtgccggctctggttgtgtacatgaacaaggtcgatcaggttgacgacgaggaa
atcctcgaactcgtcgaactcgaagttcgcgaactgctgagctcgtatgatttcgacggc
gacaacattccgatcatcaagggttcggctctggccgctctcgaaggtcgcgatccggaa
atcggtgaaaactcgatcaaggaactgatgaaggctgtcgacgaatacatcccgcagccc
gaccgtccggtcgatcaggcgttcctgatgccgatcgaagacgtattctcgatttcgggt
cgtggtacggttgtcaccggtcgtgttgaaaccggcgttgtgaacgttggtgacgaagtt
gaaatcgtcggcatcaaagacaccaagaagacgaccgttaccggcgttgaaatgttccgt
aagctgcttgatcgcggtgaagctggcgacaacatcggcgcgctgatccgtggcgtcggt
cgtgaagaagttgagcgtggccaggttctggcgaagccgggttcggtgaacccgcacacc
gacttcgaagccgaagtgtacgtgctctcgaaagacgaaggtggccgtcacacgccgttc
ttcgctaactatcgtccgcagttctacttccgcaccaccgacgtgactggcgaagtcgtt
ctgccggaaggcaccgaaatggtgatgccgggcgacaacgtttcgatcggtgtgaagctg
atcgctccgatcgcgatggatgaaggtctgcgtttcgctatccgcgaaggtggccgtacc
gtcggttcgggcgttgtggcgaagatcacgaagtaa

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