Any feedback?
Please rate this page
(sequences.php)
(0/150)

BRENDA support

Sequence of SYI_LARHH

EC Number:6.1.1.5

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
isoleucine-tRNA ligase
C1DCX2
Laribacter hongkongensis (strain HLHK9)
957
106364
Reaction
ATP + L-isoleucine + tRNAIle = AMP + diphosphate + L-isoleucyl-tRNAIle
Other sequences found for EC No. 6.1.1.5

General information:

Sequence
show sequence in fasta format
  0 MDLKKTVNLL DTPFPMRGDL ARREPGWLAQ WQAQQRYQKL RKIAAGRPKF ILHDGPPYAN
 60 GDIHIGHAVN KILKDIIVRS KTQAGFDAPY VPGWDCHGLP IEHQIEKLVK GDKKAIEAAP
120 SIHARITEYR KANGLDAKAT DLPASFIREL CREYAGLQVE RQKKDFIRLG VLGEWDNPYR
180 TMSFRSEADE IRALGKLYQQ GYLFKGLKPV YWCFDCGSAL AEAEVEYQDK TSPTIDVAFA
240 SAEPEKLAAA FGLSALPAGK TASAVIWTTT PWTIPANQAL NVHPDFDYGL YDTEKGLLIL
300 AADLAKGALE RFGLTGVEVA RCKGQALDRL TFRHPFYDRV SPVYVGDYVT LDAGTGIVHS
360 APAYGLEDFD SCRKNGMPND AILNPVTSDG TYVDSLPFFG GLHIWKANPL IVEKLAEVGA
420 LMHTSPLSHS YPHCWRHKTP VVYRATTQWF VGMDREVAGS TLRQRALKGV DDTAFFPAWG
480 QARLHAMIAN RPDWCVSRQR NWGVPIPFFL DKQTGEPHPR TPELLEAVAR KVEEQGINAW
540 FELDPAELLG EDAARFDKMK DTLDVWFDSG TTHFHVLRGT HAEQLAYPAD LYLEGSDQHR
600 GWFHSSLLTG CALDGRAPYN QLLTHGFVVD GQGRKMSKSV GNVIAPQKIN DSLGADILRL
660 WVASTDYSGE LAISDTILKG TTDSYRRLRN TIRFLLANLS DFNPATDALP VSELTELDRY
720 ALVLAQRLHA GVAEDCYPRY AFHTAMQAIV GYCTDDLGAF WLDIIKDRLY TTKADSKARR
780 SAQTALWHVT RSLLSLLAPV LCFTADEAWQ ALTGEAEDSP VYHTWHELPV VADAEALAAR
840 WDVLRALRAQ INKDIETLRE AGAVGSSLQA EVDIEADAGL YPLLNALGDE LKFVLIVSRV
900 GVVPGPETRI RVSASGEQKC ERCWHYHPTV GENAEAPTLC ARCYDNIFGQ GESRSYA
Download this sequence
in fasta format
Download all sequences for 6.1.1.5
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
237397
Woo P.C.Y.,Lau S.K.P.,Tse H.,Teng J.L.L.,Curreem S.O.,Tsang A.K.L.,Fan R.Y.Y.,Wong G.K.M.,Huang Y.,Loman N.J.,Snyder L.A.S.,Cai J.J.,Huang J.-D.,Mak W.,Pallen M.J.,Lok S.,Yuen K.-Y.
The complete genome and proteome of Laribacter hongkongensis reveal potential mechanisms for adaptations to different temperatures and habitats.
PLoS Genet.
5
0-0
2009