Theileria annulata: TA11010
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Entry
TA11010 CDS
T00253
Name
(RefSeq) hypothetical protein, conserved
KO
K15865
threonylcarbamoyladenosine tRNA methylthiotransferase CDKAL1 [EC:
2.8.4.5
]
Organism
tan
Theileria annulata
Brite
KEGG Orthology (KO) [BR:
tan00001
]
09180 Brite Hierarchies
09182 Protein families: genetic information processing
03016 Transfer RNA biogenesis [BR:
tan03016
]
TA11010
Enzymes [BR:
tan01000
]
2. Transferases
2.8 Transferring sulfur-containing groups
2.8.4 Transferring alkylthio groups
2.8.4.5 tRNA (N6-L-threonylcarbamoyladenosine37-C2)-methylthiotransferase
TA11010
Transfer RNA biogenesis [BR:
tan03016
]
Eukaryotic type
tRNA modification factors
Methylthiotransferase
TA11010
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
UPF0004
Radical_SAM
FAD_SOX
Motif
Other DBs
NCBI-GeneID:
3862858
NCBI-ProteinID:
XP_953234
UniProt:
Q4U994
LinkDB
All DBs
Position
4:complement(1166012..1168561)
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AA seq
750 aa
AA seq
DB search
MTGTRFRSPVVGCVILGVACVSCIAYYLYKRSRKRFFDPKNLIKSQIDRHNSEETHEDEA
LESSDFSDFVIVQSSEEFDHDDELMDVNFEEIEFIEDRTSDSHKVFRVFNPNKRLGDSRT
PNSNSAIATVNHSNKDKSNNVNSDKLYGNTYESTYGNPEKSNTKKHMDKHTKMDKSYGNK
GEKSPVRNGKRESLPKMADKYSDFGTLGINDEWTVLDNYTNIDGTCEEYSYVEKTVRILN
SLIHSYIQNNFFSEEMDLQKNQSIPLTTNIGIDNLTNNGADNLNNNGSYNVDNCEIDKPN
GVECSMNKSINPSEVKIYLKNFGCSHNISDSEYMLGLISESGYTITENIEECDVVIINSC
TVKNPSEHAMVNYINQGLKLNKRIIVTGCIPQSDKKHPVLSTSVTNVQFLNKLNNSVGIM
QIDKIIYVIENVMNGNRVVLLEKKSLPSLDLPKIRKNKLIEIIPISTGCLGSCTFCKTKH
SRGVLNSYEIEAILDRVESSVSEGVKEIWLTSEDLGAYGIDLGTNIITLLYSIINILPQN
IMLRLGMCNPPYIKKYINEICEILSHDNVFEFIHIPVQSCSDAVLEKMNREYLLEDFLYI
VSVIKAKLPNCTIATDIICGFPTETEQDHQITVQTLQQLKLSIINISQYYSRKGTISSSM
KELDNNVKKNRSREITNVFMSYENNSKFINSVFKVFFNHMNGDQLVGYNKYYIKVIVKGL
ENPNTFLGTVQNVKVVNTHKWHLECNLITQ
NT seq
2253 nt
NT seq
+upstream
nt +downstream
nt
atgactggaactagatttcgttcaccagttgtgggctgtgttattctaggcgtcgcctgt
gtttcctgtatcgcatattatctctataagcgttctcgtaagaggttttttgacccaaaa
aacttaatcaagtcacaaattgatcgtcataattcagaggaaactcacgaagatgaagct
ttggaatcctctgatttctctgattttgtcattgttcaatcttccgaagaattcgatcat
gatgatgaattgatggatgtaaattttgaggaaattgagtttattgaggatcgaacctca
gatagtcataaggtatttagggtatttaaccctaataaaagacttggtgatagtagaaca
ccaaacagtaacagtgccattgctacagttaaccatagcaataaggataaatctaataat
gtgaattccgataaactatacggaaatacatacgaatccacttacggaaatcctgagaaa
tcaaacactaagaaacatatggataaacatactaagatggacaaatcgtatggtaacaag
ggtgagaaatcaccggttcgaaatggtaaaagggaaagtttaccaaaaatggcagataag
tatagtgattttggcactcttggtataaacgatgagtggacagtgctagacaattatacc
aacattgatggcacttgcgaagaatattcctacgttgagaaaacggtaagaatcttaaac
tctctcattcactcttatattcagaataattttttttcagaggaaatggaccttcaaaaa
aaccaatctattccattaactactaatattggtattgacaatttaactaacaatggagct
gacaaccttaacaataacggatcttacaatgttgataactgtgaaattgacaagcctaat
ggagttgagtgtagtatgaataagagtataaatccatcagaagtgaagatatatttgaag
aattttggatgtagtcataacatatcagacagtgagtacatgttagggttaatttcagag
tcgggatatacaataacagagaatatagaagagtgtgacgtagtgataattaatagctgt
acagtaaagaatccaagtgaacatgcaatggtcaattatataaaccaaggacttaaactc
aataaacgcatcatagtcactggttgtattccacaatcagataaaaagcatcccgtatta
agtacatcagttactaatgtccaattcctcaataaactcaataattctgtaggaataatg
caaattgataagataatttatgtgattgagaatgtaatgaatggaaatcgagtagtatta
ttggagaagaaaagtttaccaagtttagatttaccaaaaattaggaagaataaactcatt
gagatcataccgatatcgacgggttgtttaggctcatgcacattttgtaaaacaaaacat
agcagaggagtattgaacagttatgaaatagaagcgatactggatagagtagaatcaagt
gtcagtgaaggagttaaggaaatttggttaacttctgaagatttaggagcatatggaatt
gatctaggcactaatataataacattactctattcaattattaatattctaccacaaaat
attatgctaagattgggaatgtgtaatccaccttatataaaaaagtatataaatgaaata
tgtgaaatattatcacatgataatgtgtttgagtttatacatataccagtacagagttgt
agtgacgcagtgttagagaagatgaatcgtgaatatctattggaagattttctatatata
gtctctgtaattaaagctaaattgccaaattgtacaatcgcaactgatattatctgtgga
ttcccaactgaaactgaacaagatcatcaaatcacagtacaaacattacaacaactcaaa
ttatccataataaacatatcacaatattattcacgtaaaggaactataagtagtagtatg
aaagaattggataataatgtcaagaagaatcgaagtagagaaataacaaatgtattcatg
tcatatgagaataattcaaagtttattaattcagtttttaaagtgttttttaaccacatg
aatggagatcaacttgtaggatataataagtattatatcaaagttattgttaaaggtttg
gaaaacccaaatacatttcttggaactgtacaaaatgttaaagttgtcaatacacataaa
tggcatctagaatgtaatttaataacacaataa
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