KEGG   Stieleria magnilauensis: TBK1r_69760
Entry
TBK1r_69760       CDS       T10880                                 
Symbol
argG
Name
(GenBank) Argininosuccinate synthase
  KO
K01940  argininosuccinate synthase [EC:6.3.4.5]
Organism
smae  Stieleria magnilauensis
Pathway
smae00220  Arginine biosynthesis
smae00250  Alanine, aspartate and glutamate metabolism
smae01100  Metabolic pathways
smae01110  Biosynthesis of secondary metabolites
smae01230  Biosynthesis of amino acids
Module
smae_M00844  Arginine biosynthesis, ornithine => arginine
Brite
KEGG Orthology (KO) [BR:smae00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    TBK1r_69760 (argG)
   00220 Arginine biosynthesis
    TBK1r_69760 (argG)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:smae04147]
    TBK1r_69760 (argG)
Enzymes [BR:smae01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.4  Other carbon-nitrogen ligases
    6.3.4.5  argininosuccinate synthase
     TBK1r_69760 (argG)
Exosome [BR:smae04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   TBK1r_69760 (argG)
SSDB
Motif
Pfam: Arginosuc_syn_C Arginosuc_synth QueC tRNA_Me_trans
Other DBs
NCBI-ProteinID: QDV87944
UniProt: A0ABX5Y108
LinkDB
Position
complement(9233193..9234413)
AA seq 406 aa
MSTKKCVLAYSGGLDTSVILGWLQDQGYEVHAVYVDLGQPCEDRDAIMQKARDCGAASAK
LIDVREELCRDFAFPVLAWQAKYEQIYLLGTSIARPLISKVCLQVAREVGAVAYAHGATG
KGNDQCRFQLAAEALDPTVEIIAPWRIKAFRDAFPGRTELIAYCAEKNIPVKASTAKPYS
SDENVLHISYEAGELEELDVNGVELVEFGMGVSPQEAPDESESVTIGFESGVPTTLNGQT
VNALEMVERLNDIGGRNGIGRIDMIENRFVGMKSRGVYESPGMTILYDALMYVEQLTMDR
DLMHLRDRLAPEVAEMVYYGFWYTPKMDALMSFIKQAQAIVTGEVTLKLYKGNISVDSRS
SPNSLYDAEIATMEGGGSYNQDDAEGFLRIQGLPSRVQGTVTPRKY
NT seq 1221 nt   +upstreamnt  +downstreamnt
atgtcgaccaaaaaatgcgtattggcgtactccggcggtctggatacctccgtcatcctg
ggatggttgcaggaccaaggatacgaagtccatgcggtgtatgtcgatttggggcaaccc
tgtgaggaccgcgacgcgatcatgcaaaaggcgcgggattgcggtgcggcgtcagcgaaa
ttgatcgacgtccgcgaagaattgtgccgcgactttgccttccccgtgctcgcctggcag
gccaagtacgaacagatctatctgctgggaacctcgatcgcgcggccgttgatcagcaag
gtttgtctgcaagtggctcgcgaagtgggggcggtcgcgtacgcccacggtgcgaccggc
aagggcaacgatcagtgtcgtttccagctggccgccgaagcactcgatcccacggtagag
atcatcgcaccgtggcgaatcaaggcattccgtgacgcgttccccggccgaaccgaattg
atcgcctactgtgccgagaagaacattccggtcaaagcgtcgaccgccaaaccgtacagc
agcgacgaaaacgtcttgcacatcagttacgaggcgggcgagctggaggaattggacgtc
aacggcgtcgaactggtcgaattcgggatgggagtcagcccccaggaagctcccgacgaa
agcgaatcggtgacgatcggattcgaatcgggcgtccccaccacgctcaacggccagacc
gtcaacgcgttggaaatggtcgaacggctcaatgacatcggcggtcgaaacggcatcggt
cgaatcgacatgatcgagaaccgtttcgtcgggatgaaaagccgcggcgtctacgagtcg
cccggcatgacgatcctgtacgacgcgttgatgtatgtcgagcaattgacgatggaccgc
gacctgatgcacctccgtgatcggctcgctccggaagtcgccgagatggtgtattacggg
ttctggtacacgcccaagatggacgccctgatgtcgttcatcaagcaagcccaagcaatc
gtaactggtgaagtcacgctgaagctgtacaagggcaacatctcggtcgactcacgaagc
agtccgaacagcttgtacgacgccgaaatcgcgacgatggaaggcggcgggtcgtacaac
caggatgacgccgaaggcttcttgcggattcagggcttgcccagccgagtccaaggcacc
gtgacgccgcggaagtactag

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