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CDS Information : BBR47_38180
open/close allGenomic map
Cell envelope and cellular processes Cell wall Transformation/competence Transport/binding proteins and lipoproteins Sensors (signal transduction) Membrane bioenergetics (electron transport chain and ATP synthase) Mobility and chemotaxis Protein secretion Cell division Sporulation Germination Intermediary metabolism Metabolism of carbohydrates and related molecules Specific pathways Main glycolytic pathways TCA cycle Metabolism of amino acids and related molecules Metabolism of nucleotides and nucleic acids Metabolism of lipids Metabolism of coenzymes and prosthetic groups Metabolism of phosphate Metabolism of sulfur Information pathways DNA replication DNA restriction/modification and repair DNA recombination DNA packaging and segregation RNA synthesis Initiation Regulation Elongation Termination RNA modification Protein synthesis Ribosomal proteins Aminoacyl-tRNA synthetases Initiation Elongation Termination Protein modification Protein folding Other functions Adaptation to atypical conditions Detoxification Antibiotic production Phage-related functions Transposon and IS Miscellaneous Similar to unknown proteins Homologous to unknown proteins Partially similar to unknown proteins No similarity
Location
Organism
Brevibacillus brevis NBRC 100599
Replicon
chromosome
Start / Stop / Direction
4,003,870 / 4,001,093 / -
Location
complement(4001093..4003870)
Type
CDS
Length
2,778 bp (925 aa)
Annotation
Product
isoleucyl-tRNA synthetase
Gene name
ileS
Functional category
Information pathways - Protein synthesis - - Aminoacyl-tRNA synthetases
EC number
6.1.1.5
Note
KEGG pathway
Sequence feature
References
HAMAP:MF_02002 Uniprot:P41972 Pubmed:10446055 Uniprot:P00956 Pubmed:7929087
Computational search results
BLASTPDatabase:UniProtKB:13.0
HAMAPDatabase:HAMAP:20080521
InterProDatabase:interpro:16.0
IPR001412 Aminoacyl-tRNA synthetase, class I, conserved site (Conserved_site)PS00178 AA_TRNA_LIGASE_IIPR001412 Aminoacyl-tRNA synthetase, class I (Domain)PS00178 AA_TRNA_LIGASE_IIPR001412 Aminoacyl-tRNA synthetase, class I (Family)PS00178 AA_TRNA_LIGASE_IIPR002300 Aminoacyl-tRNA synthetase, class Ia (Domain)PF00133 tRNA-synt_1IPR002301 Isoleucyl-tRNA synthetase, class Ia (Domain)TIGR00392 ileS: isoleucyl-tRNA synthetasePTHR11946:SF9 ISOLEUCYL TRNA SYNTHETASEIPR002301 Isoleucyl-tRNA synthetase (Family)PR00984 TRNASYNTHILETIGR00392 ileS: isoleucyl-tRNA synthetaseIPR009008 Valyl/Leucyl/Isoleucyl-tRNA synthetase, class Ia, editing (Domain)SSF50677 ValRS/IleRS/LeuRS editing domainIPR009080 Aminoacyl-tRNA synthetase, class 1a, anticodon-binding (Domain)SSF47323 Anticodon-binding domain of a subclass of class I aminoacyl-tRNA synthetasesIPR010663 Formamidopyrimidine-DNA glycolase, C-terminal (Domain)PF06827 zf-FPG_IleRSIPR013155 Valyl/Leucyl/Isoleucyl-tRNA synthetase, class I, anticodon-binding (Domain)PF08264 Anticodon_1IPR014729 Rossmann-like alpha/beta/alpha sandwich fold (Domain)G3DSA:3.40.50.620 no descriptionIPR015905 Isoleucyl-tRNA synthetase, class Ia, N-terminal (Domain)PR00984 TRNASYNTHILEIPR023585 Isoleucyl-tRNA synthetase, type 1 (Family)PTHR11946:SF9 ISOLEUCYL TRNA SYNTHETASE
SignalP
No significant hit
TMHMM
No significant hit
SOSUI
No significant hit
Calculated information (Amino acid sequence)
size of protein
925 amino acids
molecular mass
104,410.48 Da
pI
5.49
aa composition
Ala Val Leu Ile Phe Trp Pro Met Gly Ser
9.1 (84aa) 8 (74aa) 8 (74aa) 5.3 (49aa) 4 (37aa) 2.3 (21aa) 4.4 (41aa) 1.7 (16aa) 6.6 (61aa) 5.1 (47aa)
Thr Cys Asn Gln Tyr Lys His Arg Asp Glu
4.3 (40aa) 1.8 (17aa) 3.5 (32aa) 3.4 (31aa) 4 (37aa) 5.9 (55aa) 2.8 (26aa) 5.4 (50aa) 6.9 (64aa) 7.5 (69aa)
Sequence
>BBR47_38180 isoleucyl-tRNA synthetase
ATGGATTACAGCAAAACTTTAGCGCTACCAAAAACCGAGTTCCCTATGCGTGGAAATTTG
CCAAGCCGCGAGCCACAGATGCAAGCGGTATGGGAAGAGCAAAATATTTACCAACAAGTG
TTGGATCGTACAAAAGACCGCCCGTCTTTTGTCTTGCATGATGGCCCTCCATATGCGAAT
GGAGACATTCATATTGGTCACGCACTGAACAAAATCCTTAAGGACTTCATCGTTCGCTAT
AAATCCATGGCAGGCTTTTATGCGCCGTACATCCCAGGCTGGGATACACATGGTTTGCCG
ATTGAGCAAGCGATTATCAATGCACAAGGGCTGGATCGTCGTAGCATCGAAGTGAACGAT
TTCCGCCAGCGCTGTGAAGAATATGCTTGGTCCTATATCGATAAGCAACGCGACCAATTC
AAGCGTCTGGGCGTTCGCGGAGATTGGGAAAACCCTTATGTAACACTCCTGCCTGAGTAT
GAAGCCAACCAAATTCGCGTATTCGGTGAAATGGCGAAGAAGGGTTATATTTACAAAGGT
CTGCGCTGCGTATACTGGTCTCCGTCTTCTGAGACGGCTCTGGCTGACGCAGAAATCGAA
TACAAAGACAAGCGTTCTCCTTCTATTTACGTCAGCTTCCAAGTAGCAGATGGAAAAGGC
AAGCTGGACATAGAGACAGGTGTTGTGATCTGGACAACGACTCCGTGGACATTGCCAGCA
AACCTCGCAATCAGCTTGCACCCTGAACTCGAGTACAACGTCGTGAAGGTAGATGGCCGC
AAATTCCTGGTAGCCAACGGTCTGATTGAAGCTGCGAGCAAAGAAATTGGCTGGGAAGGC
GTAGAGATTCTTGCAACCTTTAAAGGTCAAGAGCTGGAAGGTGTAGAAACGCAGCATCCG
TTCTATGATCGCAAGTCTCCACTCATCCTGGGCGAGCACGTAACCCTGGATGCAGGTACT
GGTTGCGTTCATACTGCTCCAGGACACGGGGAAGATGACTTTAACGTTGGTCAAAAATAC
AATTTGGGTGTCCTTTGCCCGGTAGATCACGAAGGTAAAATGACCAATGAAGCACCAGGC
TTTGAAGGTCTATTCTATGAAGATGCCAACAAAGTGATTACCGAAAAGCTGAAAGAAAAC
GGAGCACTCTTGAAGCTCAGTTTCTTCACGCACTCTTACCCACATGACTGGCGTACGAAA
AAACCGGTTATTTATCGCGCGACAGAGCAATGGTTCGCATCGATCGACGGATTCCGTACG
CAAATGCTCGAAGCGATTAAAAATGTAAAATGGATTCCGCATTGGGGAGAAACTCGTCTG
GCTAACATGATTGCGGATCGTGGCGACTGGTGCATTTCCCGTCAGCGTGTCTGGGGTGTA
CCGATTCCAATCTTCTATTGCAAAGCATGTAACGAACCGATCATTAACGACACGACGATC
AACCATGTTGCTGATCTGTTCCGCAAAGAAGGATCGAAAGTATGGTTCTCCCGTGAAGCA
AATGAGCTCGTTCCAGAAGGGCTTTCTTGCACCAAATGCGATTGCAACGATTTCCGCAAA
GAAACGGATATTATGGACGTTTGGTTCGACTCCGGTTCCAGCCACCAGGCTGTTTTGCGC
GAAAGAGGCATTGCTTGGCCAGCTGACATGTATCTGGAAGGCTCTGACCAGTATCGTGGC
TGGTTTAACTCTTCTCTCTCGACAGGGGTTGCCGTGTATGGCACAGCTCCTTACAAATCC
GTCCTGAGCCATGGCTTTGCATTGGATGGAGAAGGACGCAAAATGTCCAAATCTCTTGGT
AACGTCATCGTGCCTCAACAAGTTATTGACAAGATGGGCGCAGATATCTTGCGTCTGTGG
GTAGCTTCTGTTGATTATCAAGCTGATGTGCGCATTTCCGATGCGATTCTGAACCAGATC
GCTGAGGTGTACCGCAAAATCCGCAATACGTTCCGCTTCCTGTTGGGTAACCTGGATGGA
TTTAATCCAGCAACAGACCGCGTAGCGTACGAAGAGCTGGGAGAGCTGGATCGTTATGTT
CTGGCGAAAGCGGCAAAAGTCGCGAAGCGTACACGCAAAGCATACGATGAATATCAGTTC
CATACCGTTTTCCATGCGGTTCACAACTTCTGCGTGATTGATTTGTCCGCATTCTATCTG
GATATTTGCAAGGATCGCCTGTATGTAGAAGCACCAGACAGTCTGAAACGACGTGCTGCA
CAGACAGTGATGTACGATTGCTTGCTCAGTCTGGTGAAGCTGGTTGCTCCACTCTTGCCG
CATACAGCAGATGAGGTGTGGGCGTTCATTCCAGGCGTGGAAGAGAAGAGTGTGCAGTTG
ACAGATATGCCAGAAGGCGACGAACAACATCTCAGCTTTGCAGCAGAAGCAGAGAGCAAA
TGGGATGCGTTCCTGGCGATCCGTGACGAGGTTCTCAAAGCCATGGAAGAAGCGCGCCGC
AACAAGGTGTTCGGTAACTCCGTTGATGCGAAGCTGGCTCTGTACCCACAAACGGAAGAA
GTTGCGAAAACATTGGCAGCAATGGACGATCTAGCTGACCTGTTTATCGTGGCTCACGTG
GATGTACACAGTGGGTCTGCTCCGGCAGAAGCGGTACAACTCGAAGGAATTGCTGCTGTG
GTCTCTGCCGCAGACGGTGGAAAATGCGAGCGTTGCCGCGTAGTAAAACCTGATGTTGGC
ACTCGCGAGTCGCACGCGTCGCTCTGCGTACGTTGTGCTGATGTCGTCGAACAACATTAC
GCACATGTAACAGAATAA
>BBR47_38180 isoleucyl-tRNA synthetase
MDYSKTLALPKTEFPMRGNLPSREPQMQAVWEEQNIYQQVLDRTKDRPSFVLHDGPPYAN
GDIHIGHALNKILKDFIVRYKSMAGFYAPYIPGWDTHGLPIEQAIINAQGLDRRSIEVND
FRQRCEEYAWSYIDKQRDQFKRLGVRGDWENPYVTLLPEYEANQIRVFGEMAKKGYIYKG
LRCVYWSPSSETALADAEIEYKDKRSPSIYVSFQVADGKGKLDIETGVVIWTTTPWTLPA
NLAISLHPELEYNVVKVDGRKFLVANGLIEAASKEIGWEGVEILATFKGQELEGVETQHP
FYDRKSPLILGEHVTLDAGTGCVHTAPGHGEDDFNVGQKYNLGVLCPVDHEGKMTNEAPG
FEGLFYEDANKVITEKLKENGALLKLSFFTHSYPHDWRTKKPVIYRATEQWFASIDGFRT
QMLEAIKNVKWIPHWGETRLANMIADRGDWCISRQRVWGVPIPIFYCKACNEPIINDTTI
NHVADLFRKEGSKVWFSREANELVPEGLSCTKCDCNDFRKETDIMDVWFDSGSSHQAVLR
ERGIAWPADMYLEGSDQYRGWFNSSLSTGVAVYGTAPYKSVLSHGFALDGEGRKMSKSLG
NVIVPQQVIDKMGADILRLWVASVDYQADVRISDAILNQIAEVYRKIRNTFRFLLGNLDG
FNPATDRVAYEELGELDRYVLAKAAKVAKRTRKAYDEYQFHTVFHAVHNFCVIDLSAFYL
DICKDRLYVEAPDSLKRRAAQTVMYDCLLSLVKLVAPLLPHTADEVWAFIPGVEEKSVQL
TDMPEGDEQHLSFAAEAESKWDAFLAIRDEVLKAMEEARRNKVFGNSVDAKLALYPQTEE
VAKTLAAMDDLADLFIVAHVDVHSGSAPAEAVQLEGIAAVVSAADGGKCERCRVVKPDVG
TRESHASLCVRCADVVEQHYAHVTE
Distribution of Our Microbial Genomic DNA clones
We have been distributing copies of the microbial genomic DNA clones constructed during the course of each of the genomic DNA sequencing projects.
You can find more detailed information at
http://www.nbrc.nite.go.jp/e/mdna-e.html .