KEGG   Saccharomycodes ludwigii: SCDLUD_000115
Entry
SCDLUD_000115     CDS       T08289                                 
Name
(RefSeq) hypothetical protein
  KO
K01915  glutamine synthetase [EC:6.3.1.2]
Organism
slud  Saccharomycodes ludwigii
Pathway
slud00220  Arginine biosynthesis
slud00250  Alanine, aspartate and glutamate metabolism
slud00630  Glyoxylate and dicarboxylate metabolism
slud00910  Nitrogen metabolism
slud01100  Metabolic pathways
slud01110  Biosynthesis of secondary metabolites
slud01230  Biosynthesis of amino acids
Brite
KEGG Orthology (KO) [BR:slud00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00630 Glyoxylate and dicarboxylate metabolism
    SCDLUD_000115
  09102 Energy metabolism
   00910 Nitrogen metabolism
    SCDLUD_000115
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    SCDLUD_000115
   00220 Arginine biosynthesis
    SCDLUD_000115
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:slud04147]
    SCDLUD_000115
Enzymes [BR:slud01000]
 6. Ligases
  6.3  Forming carbon-nitrogen bonds
   6.3.1  Acid-D-ammonia (or amine) ligases (amide synthases)
    6.3.1.2  glutamine synthetase
     SCDLUD_000115
Exosome [BR:slud04147]
 Exosomal proteins
  Exosomal proteins of other body fluids (saliva and urine)
   SCDLUD_000115
SSDB
Motif
Pfam: Gln-synt_C Gln-synt_N
Other DBs
NCBI-GeneID: 70105437
NCBI-ProteinID: XP_045936464
LinkDB
Position
I:complement(280085..281200)
AA seq 371 aa
MSDSFVVEKTSILAKYLQLDQRGSIIAEYIWIDGTGSIRSKGRTLKKRITSIDELPEWNF
DGSSTNQALGHDSDVYLKPVAFYPDPFRRGDNIIVLAECWNNDGTPNKFNHRHEAEKIFN
AHKKSEIWFGLEQEYTLLDQYDNIYAWPKGGYPAPQGPYYCGVGCGKVYARDVIEAHYRA
CLYSGITLSGINAEVMPSQWEFQVGPCTGIKMGDELWVARYILERVAEEFGVKITLHPKP
LKGDWNGAGCHTNVSTVEMRKPGGMKYIEDAISKLSTRHDAHIKLYGTDNDLRLTGRHET
ASISQFSSGVANRGASIRIPRSVSKEGYGYFEDRRPASNIDPYLVTGIMCETVCGAVEGA
DMVKEFERESN
NT seq 1116 nt   +upstreamnt  +downstreamnt
atgtctgatagttttgttgttgaaaaaacaagtattttagctaaatatttgcaattggac
caaagaggttctataattgccgaatatatctggatcgatggcactggttctattagatcc
aagggtagaactttaaagaagagaattacttctattgatgaattaccggaatggaatttt
gatggttcaagtactaatcaagctttgggtcatgacagtgatgtttacttgaaaccagtt
gcattttacccagatccatttagaagaggtgataatattattgttttggccgaatgttgg
aacaacgatgggactccaaacaagttcaaccacagacatgaagctgaaaaaattttcaat
gctcacaagaaatctgaaatatggtttggtttggaacaagaatataccttgctagatcag
tatgacaacatttatgcttggccaaagggcggttacccagcccctcaaggaccatactac
tgtggtgttggttgtggtaaagtttacgctcgtgatgttattgaggctcactacagggct
tgtttatacagtggtattactctttctggtattaacgctgaggttatgccttcccaatgg
gaattccaagttggtccatgtacgggtattaagatgggtgatgaattatgggttgctcgt
tatatattggaaagagttgccgaagaatttggtgttaagattaccttacatccaaaacca
ttgaagggtgattggaatggtgctggttgccacactaatgtttctaccgttgaaatgaga
aaaccaggcggtatgaaatatatcgaagatgctattagtaagttatccacgagacatgac
gctcacattaaattgtatggtaccgataacgacttgagattgaccggtagacacgaaact
gcctctatttctcagttttcttctggtgttgccaatagaggtgcttctattagaattcca
aggtctgtttccaaagaaggatatggttactttgaagataggagaccagcttctaacatt
gatccatatttggttactggtattatgtgtgagactgtttgtggtgccgttgaaggcgct
gatatggttaaagagtttgaaagagaatccaattag

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