| Entry |
|
| Definition |
ATP-dependent metalloprotease FtsH
|
| Orthology |
| cell division protease FtsH [EC:3.4.24.-] |
|
| Organism |
|
| Class |
|
| SSDB |
    |
| Motif |
 |
| Other DBs |
NCBI-GI: NCBI-GeneID: JGI: UniProt: |
| Position |
614777..616705
 |
| AA seq |
642 aa  
MGRFTKNIVLYLLIIAAFVIAIDAFSGQSANKSELSYTGFIQQVQQKKVESVTITNDHGI
KGKLKNGTEFNSYAPTDETLIKTLQDNGVEITAAPPEQPAWWMSLLGSAIPIIILVVLFF
FIMQQTQGGGGRVMNFGKSRAKLMGEGNVKVSFKDVAGAEEAKQELEEVVEFLKDPGKFT
TIGAKIPKGVLLAGPPGTGKTLLAKAVAGEAGVPFFTISGSDFVEMFVGVGASRVRDLFT
QAKKNAPCIIFIDEIDAVGRQRGAGLGGGHDEREQTLNQLLVEMDGFGANEGIITIAATN
RPDILDPALLRPGRFDRQVIVGRPDLRGREAILKVHARNKPLADDVDLKIIAKKTPGFTG
ADLSNLLNEAALLAARLNKKVITMAEVEEASEKVSMGPERRSHIVSDKDRKLTAYHESGH
AIVAHLLPHADPVHKVTIIPRGAAGGYTMMLPTEEQNYKTKSQLLADIRVALGGRIAEAL
ILDEISTGASGDLQSVTNTARAMVTRWGMSDELGPIVFGEQQEQIFLGKNLGHERNYSEE
IAAKIDSEIHRIVEEAYKDVTKLLSDNEKFLHDMANALLEEETIDAKAVDNLYKYGTTKE
PEAEEPKVASEADSSIVPEGVDAKKTTSTVADLSEASSNEIK |
| NT seq |
1929 nt  +upstreamnt +downstreamnt
ttgggtcgatttacaaaaaatatcgtcctttatttacttatcattgccgctttcgttatc
gccattgacgctttctctggtcaaagtgcgaataaatctgaactcagttatacaggattt
attcaacaagtacaacagaaaaaggttgagtccgtaacgattaccaatgatcatggtatt
aaaggtaaactaaaaaatggaacagaattcaattcttatgcgccaactgatgaaacgtta
atcaaaactttacaagataatggtgtagaaattactgcagctccacctgagcaaccagct
tggtggatgagcttgttaggttctgctattccaattattattttggttgtattgttcttc
ttcatcatgcaacaaactcaaggtggcggtggccgagtgatgaactttggtaaaagccgt
gctaaattgatgggtgaaggcaatgtaaaggttagcttcaaagatgtagctggcgctgaa
gaagcaaaacaagaattagaagaagtagtagaattcttgaaggatccaggcaagtttaca
actatcggtgctaaaattccgaaaggtgtattattggcagggcctccaggtacaggcaaa
acattacttgctaaagctgttgctggtgaagcaggggtaccattctttacgatttctggt
tctgactttgtagagatgtttgttggtgttggtgcttctcgtgtgcgtgatcttttcaca
caagcgaaaaagaacgctccttgtatcatctttatcgatgaaatcgatgcggttggtcgt
caacgtggcgccggtcttggtggcggtcacgatgaacgtgaacaaacattaaaccaattg
ctcgttgaaatggatggtttcggtgctaacgaaggtattattactatcgctgcaacaaac
cgcccagatattctagatcccgcacttttacgtccagggcgttttgaccgtcaagttatc
gtaggtcgtccagacctacgcggccgtgaagcaatcttgaaagttcatgctcgtaataag
cctttggctgatgatgtagacttgaaaataattgcgaagaaaactccaggctttactggt
gcagacttgagcaatttgttaaatgaagcagctcttttggcggctcgtcttaacaaaaaa
gtaattactatggctgaagttgaagaagccagtgaaaaggttagcatgggtcctgagcgc
cgcagtcacattgtgagcgacaaagatcgcaagttaacagcgtaccatgaatctggtcat
gctattgtggcacatctattgcctcatgcagatcctgttcataaggtaacaattattcct
cgtggtgcagctggtggctacactatgatgcttccaacggaagaacaaaactacaaaaca
aaatctcaattattagcagatattcgggtggctcttggtggtcgaattgcagaagccttg
attttagatgaaatcagtacaggtgcttctggagaccttcaaagtgtaaccaatactgct
cgtgctatggtaactcgttgggggatgagtgatgagcttggccctatcgtgttcggtgaa
caacaagaacaaatcttcttaggaaaaaacctgggccatgagcgcaactatagtgaagaa
atcgctgcgaaaatcgactctgaaattcatcgtatcgtagaagaagcttataaagatgta
acaaaacttcttagcgataatgaaaaattcttacatgacatggcaaatgctttgttagaa
gaggaaacaatcgatgcgaaagcggtagataatctttacaaatatggtacaacaaaagaa
cctgaagctgaggagcctaaagtagcttctgaagcagacagtagcatagtaccagaaggt
gttgatgctaaaaaaacaactagtactgtagcagatcttagtgaagcatcatctaatgaa
attaaataa |