Apis florea (little honeybee): 100868653
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Entry
100868653 CDS
T09140
Name
(RefSeq) katanin p60 ATPase-containing subunit A-like 2
KO
K07767
katanin p60 ATPase-containing subunit A1 [EC:
5.6.1.1
]
Organism
aflr
Apis florea (little honeybee)
Brite
KEGG Orthology (KO) [BR:
aflr00001
]
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04812 Cytoskeleton proteins [BR:
aflr04812
]
100868653
Enzymes [BR:
aflr01000
]
5. Isomerases
5.6 Isomerases altering macromolecular conformation
5.6.1 Enzymes altering polypeptide conformation or assembly
5.6.1.1 microtubule-severing ATPase
100868653
Cytoskeleton proteins [BR:
aflr04812
]
Eukaryotic cytoskeleton proteins
Microtubules
Tubulin-binding proteins
Microtubule severing proteins
100868653
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
AAA
AAA_5
AAA_16
DUF815
LisH
RuvB_N
AAA_2
AAA_14
AAA_22
AAA_lid_3
AAA_24
RNA_helicase
AAA_18
Mg_chelatase
NPHP3_N
bpMoxR
AAA_7
NACHT
AAA_28
IstB_IS21
TIP49
AAA_3
TsaE
AAA_33
AAA_19
nSTAND3
AAA_17
AAA_11
AAA_25
ABC_tran
AAA_30
Motif
Other DBs
NCBI-GeneID:
100868653
NCBI-ProteinID:
XP_012342392
LinkDB
All DBs
Position
Unknown
AA seq
480 aa
AA seq
DB search
MSVLSMEGSINKMRHGLRKEEESRILQRRQNILYLIYDYLNENNYTDTCETLISEAELVS
EIQVCDNIDLERIIMEFESYYHMKFNKYPMFCKKNTTNIDKKKSKTKVTMPATKQSQSEL
MKENSIQQEINNEINNINLAMTVKPIFPNENIVKVSSEEFDIPKEKFMQSKIWKCIEKLY
SANSELRKIAIDISHEIVLENLNVHWDDVVGLDDCKTAIKEAIVYPLKYPVFFAGPFSPW
KGILLYGPPGTGKTMLVKAVATECKCTFFNITASSLVSKWRGDSEKYIRVLFDLAYSHSP
TIIFIDEIDWIATNVQNNSLSEPAKRFRSELLTKLDGLVSTDNSNVLLLAATNSPWNIDS
ALLRRLEKRIYVSLPNEATRLGIFKLYLSDNLLKNKNIVDFLMNYTKQYSGADIKLLCKQ
AWMLEVTPMWKNLEKKEIFITDLKYELRNIEILKELLKETVPTVTNTNIYDNWDTNINNK
NT seq
1443 nt
NT seq
+upstream
nt +downstream
nt
atgagtgttttgtctatggaaggaagcataaataagatgcgtcatggtttgcgaaaagag
gaagagagtcgtattttacaacgtcgtcaaaatatattatatcttatatatgattatctg
aatgaaaataattatacagatacttgcgaaacattaatctccgaagctgaacttgtttcc
gaaattcaggtttgcgataatatcgatttagaaagaattataatggaatttgaaagttat
tatcatatgaaattcaataaatatcctatgttttgtaaaaaaaatacaacaaatatagat
aaaaaaaaaagtaagacaaaagttacaatgcctgctaccaaacaatcgcaaagtgaatta
atgaaagaaaatagtatacaacaagaaataaataatgagataaataatattaatcttgca
atgacagtaaaaccaattttccccaacgagaacatagttaaagtttcatcagaagaattt
gacatcccaaaagaaaaatttatgcaatcgaaaatatggaaatgtatcgaaaaactatat
tcagcaaattcggaattgcgaaaaatcgccatcgacatatcacatgagattgtattggag
aatttaaatgttcattgggatgatgtagtaggtttagatgactgtaaaacagctattaaa
gaagctattgtatatcctcttaaatatcctgtcttctttgccggtccattttcgccttgg
aaaggtattctattatatggaccacctggcacaggcaagacaatgttagtgaaagctgta
gcaacagagtgcaaatgcactttttttaatataacagctagctccttagttagtaaatgg
agaggtgattccgaaaagtacatacgtgttttattcgatcttgcttatagccattcgccc
acaattattttcatagatgaaatcgattggatagctacaaatgtacaaaataattcatta
tctgaacctgcaaaaagatttagatcagaacttcttactaagttggatggattagtatct
actgataattcaaacgtacttcttctagctgcaactaattctccgtggaatattgattca
gctttacttagacgtcttgagaaacgaatatatgtgtcattacccaatgaagctactcga
cttggtatattcaaattatatctcagtgataacttgttaaagaataaaaatattgtagat
tttttaatgaattatactaaacagtattccggtgcagacataaaattgctttgtaaacaa
gcatggatgttagaagtaactccaatgtggaaaaatcttgaaaaaaaagaaatattcatt
acagatttgaaatatgaattaaggaatattgaaatattaaaagaattgcttaaagaaaca
gtacctacagtaacaaatacgaatatatatgataactgggatacaaatataaataacaaa
taa
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