KEGG   Magnetospira sp. QH-2: MGMAQ_3646
Entry
MGMAQ_3646        CDS       T03795                                 
Name
(GenBank) putative Asparagine synthase (Glutamine-hydrolyzing)
  KO
K01953  asparagine synthase (glutamine-hydrolysing) [EC:6.3.5.4]
Organism
magq  Magnetospira sp. QH-2
Pathway
magq00250  Alanine, aspartate and glutamate metabolism
magq01100  Metabolic pathways
magq01110  Biosynthesis of secondary metabolites
magq01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:magq00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    MGMAQ_3646
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01002 Peptidases and inhibitors [BR:magq01002]
    MGMAQ_3646
Enzymes [BR:magq01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.5  Carbon-nitrogen ligases with glutamine as amido-N-donor
    6.3.5.4  asparagine synthase (glutamine-hydrolysing)
     MGMAQ_3646
Peptidases and inhibitors [BR:magq01002]
 Cysteine peptidases
  Family C44
   MGMAQ_3646
SSDB
Motif
Pfam: Asn_synthase GATase_6 GATase_7 DUF3700 tRNA_Me_trans NAD_synthase QueC
Other DBs
NCBI-ProteinID: CCQ75458
UniProt: W6KDU5
LinkDB
Position
complement(3733977..3735824)
AA seq 615 aa
MCGIAGTTQAEAGVLSAFTERLHHRGPDARGSWIENGIGLAHTRLAVIDLTEGGAQPMVS
DCGRYVLAFNGEIYNYRDLRQELQAAGDLFRSDSDTEVLLALLRRHGAAGIAKLVGMFAF
ALWDRHERTLVLARDRLGIKPLVYGALAHGGLAFASEIRALRAHPGIDLAIDRDALSQYL
ACLYVPAPLTIHKGIRKLPPGHLLTWKDGAARIEPYWRPHYAGSRAVSHDEAVEEILPLV
RRAVVDRLVADVPVGCFLSGGIDSSVIAALMAEEAKRLGAPPIRSFTMTFDEAAYDERHN
ARRVADHIGSDHVELRASPTLVDLLDDYIDGFGEPFGNPTALLINDLSRKAKEHVTVALV
GDGGDEVFAGYPRYRGGLLAARYRRIPAPLRHLGAGAAALIPESTSGRHGLRRVREFLTA
ANRPDPEMYAAWVEYFDPAERRALLGLSEDPAQPLADLYRESPSSDPLDAMQQTDLLSFL
PGNLLAYGDAMSMRHALELRLPLIDHRLVEAVGKVTPALRVENGMKSLLRGVAKRLLPPD
IVDAPKRGFNPPMGVWLRKDLAPMIEERLTPGRMADLGLAPKAVNHLLAVQKAGRRDVAL
KVWALLVFEAWERRA
NT seq 1848 nt   +upstreamnt  +downstreamnt
atgtgcggaatcgccggaacgacccaggccgaagcgggtgttctgagcgcctttaccgag
cgtttgcaccatcgcgggcccgacgcccggggttcttggatcgagaacggaatcggtctg
gcccatacccgattggcggtcattgatctgaccgaagggggcgcccagcccatggtttcc
gattgcggacgctatgtgctggctttcaacggcgaaatctataactaccgcgatctgcgc
caagagctacaagccgcgggagacctgttccgctccgacagcgatacggaggtcttgctt
gccctgttgcggcgccatggggccgccggaatcgctaagctggtcggcatgttcgccttt
gctctgtgggacaggcacgaacggaccttggtgctggcccgagacaggctgggcatcaaa
ccgctggtctatggtgccctggcccatgggggattggccttcgcctcggagatccgcgcc
ctgcgcgcacatccgggaatcgatctggccatcgaccgggacgctctgtcccagtacctg
gcctgcctctatgtcccggcgccactgaccatccacaaagggattcgcaagctgccgccc
ggccatctgctgacctggaaagatggcgcggcccgtatcgagccctattggcggccccat
tatgccggaagccgcgcggtgagccacgacgaagcggtggaggaaatcctgccgctggtc
cgccgggcggtggtggaccggttggtggccgatgtgccggtgggctgttttctttccggc
ggcatcgattcatcggtgatcgcggccttgatggccgaagaggccaagcgccttggcgcc
ccaccgatccgcagcttcaccatgaccttcgatgaagcggcctacgacgaacgccacaat
gcccgccgggtggccgaccatatcggcagcgaccatgtggagctgcgcgccagcccgacc
ctggtggatctgctggacgactatatcgacggctttggcgaaccctttggcaatcccacg
gccttgctgatcaacgacctgtcgcgcaaggccaaagagcatgtcaccgtggccctggtg
ggcgacggcggcgacgaggtgtttgccgggtatccaagatatcgtggcgggctgttggcg
gcccgttatcgccggatcccggccccgctgcgtcatctgggtgccggggccgccgcattg
atccccgaaagcacctcggggcgtcatggtctacgccgggtgcgggaattccttaccgcc
gccaatcgtcccgatccggagatgtatgctgcctgggtggagtatttcgatccggccgag
cggcgggcgctgctggggctgtccgaagatccggcccagccccttgccgatctctatcgg
gaatcgccctcctccgatcccctggacgccatgcagcaaaccgatctgttgtctttcctg
ccggggaatctattggcctatggggatgccatgagtatgcgccatgcgctggaactccgg
ttgccgttgatcgatcaccggctggtggaagcagtcggcaaggtcaccccggcacttcgt
gtcgaaaatggaatgaagtctcttttgcgcggtgtggccaagcgtttgttgcctccggat
atcgttgatgctccgaaacgaggctttaatccgcccatgggggtctggctgcgcaaggac
ttggcgccgatgatcgaggaacggctcactcccggccgcatggccgatctggggctcgcg
cccaaggcggtcaatcatttgttggcggttcagaaagcgggccgccgggacgtggccctc
aaggtttgggcgctgttggtcttcgaggcctgggagcggcgcgcatga

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