KEGG   Spiribacter sp. 2438: GJ672_08190
Entry
GJ672_08190       CDS       T06294                                 
Name
(GenBank) AMP-binding protein
  KO
K01897  long-chain acyl-CoA synthetase [EC:6.2.1.3]
Organism
spiz  Spiribacter sp. 2438
Pathway
spiz00061  Fatty acid biosynthesis
spiz00071  Fatty acid degradation
spiz01100  Metabolic pathways
spiz01212  Fatty acid metabolism
spiz02024  Quorum sensing
Module
spiz_M00086  beta-Oxidation, acyl-CoA synthesis
Brite
KEGG Orthology (KO) [BR:spiz00001]
 09100 Metabolism
  09103 Lipid metabolism
   00061 Fatty acid biosynthesis
    GJ672_08190
   00071 Fatty acid degradation
    GJ672_08190
 09140 Cellular Processes
  09145 Cellular community - prokaryotes
   02024 Quorum sensing
    GJ672_08190
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01004 Lipid biosynthesis proteins [BR:spiz01004]
    GJ672_08190
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:spiz04147]
    GJ672_08190
Enzymes [BR:spiz01000]
 6. Ligases
  6.2  Forming carbon-sulfur bonds
   6.2.1  Acid-thiol ligases
    6.2.1.3  long-chain-fatty-acid---CoA ligase
     GJ672_08190
Lipid biosynthesis proteins [BR:spiz01004]
 Acyl-CoA synthetase
  Long/very long chain acyl-CoA synthetase
   GJ672_08190
Exosome [BR:spiz04147]
 Exosomal proteins
  Exosomal proteins of breast milk
   GJ672_08190
  Exosomal proteins of breast cancer cells
   GJ672_08190
SSDB
Motif
Pfam: AMP-binding Acyltransferase PP-binding AMP-binding_C
Other DBs
NCBI-ProteinID: QGM22237
UniProt: A0A6B8JUK5
Position
1648660..1651296
AA seq 878 aa
MDARSIPALIRAGGETTERPALVAYTPDGPREVSHEQLQAGIERRAKALLAEGLEPGGRV
MIFAANSPEWVETALATLTAGGTVVPVDAQMGERDLAHVISDAGPWRIFTSDDLRRRLPN
AVATERIHILKPDETSEASPASEDAPDPESRAPTPDTIAAIFYTSGTTGPPKGVPLTHAN
ITTNVSALLDEGIAHNGDRVLVPLPLHHVYPFSIGLITTLSIGATMVLPQSLVGPRIAEA
LRDSEATILLGVPRLYSALWSRLEARLTAGRRWRQKILNGVMGACTFLQRRLGVNAGRVI
FRPVMKRLAPSLRLAVSGGAALDAQLGERLQALGWTVATGYGLTETSPILTINAPRDARL
DTAGRPLPGVEVSISNGEVVARGPNVFDGYLNEAEPRHEVIDEQGWYHTGDSGEFDEDGY
LRLSGRISSTIVLPGGENIDPERIEGALSEQPAVREAGVLEVDGRLAAVLVPEPGDAEET
EEARDERLDEAVGEAMSHLPGHHAIGDVQVSPDPLPRTRLGKLRRHRLEELYEQLQSGEK
VAEQAPMDPEDMAPEDQSLLADPVAAATWDFLAERFANERLTPDSRLHRDLGLDSLSWVD
LGMALRERAGIELGDDAIGRVETVRDLLQEAIQADQPDGEADAGGSLIDALQAPESLLDD
EDRRLLAPRGPVRHATARLALGICNLLNRFVVRVEVEGEWPATGSYLITARHISAYDPIA
LIGSMSRDRIDPLFWAGWTGMMFSSPPRRWFSHTARVLPIDAGAAPRRSLALAAACLDRG
HPLIWFPEGQRGSGEGLEPLRPGIGLLLEAHPVPVVPVWIEGTDEVLPIGRFIPRRGRVR
VRIGEPLSSESYGTDRRRILDQVETEMRRLGEEEKDES
NT seq 2637 nt   +upstreamnt  +downstreamnt
atggatgccaggagtattcccgcactcattcgggccgggggagaaacgacagagcgcccc
gcgctggtggcttacacgccggatgggccgcgcgaggtcagtcatgagcagctgcaggcc
ggtatagagcggcgcgcgaaggcattgttggccgagggactggagcccggtggccgggtg
atgattttcgccgccaacagtcccgagtgggtggaaaccgccctggccaccctgaccgcc
ggcggcaccgtggtgccggtggacgcccagatgggcgagagggatctggcccacgtgatc
agcgatgccggtccctggcgtatcttcaccagcgacgacctgcggcgccgcttgccgaat
gccgtggccaccgaaagaattcatatcctgaaaccggacgaaacctccgaggcatccccc
gccagcgaggatgcgccggatccggagtcgagggccccgacgcccgataccatcgccgcc
atcttctacacctccggcaccaccggcccccccaagggcgtaccgctcacccacgccaac
atcaccaccaacgtcagcgctctgctggacgagggcattgcccacaacggggatcgggtg
ctggtccctctgcccctgcatcacgtttacccgttcagcattggtctgatcacgaccctt
agcattggcgccaccatggtgctgccccaatccctggtcgggccacgcatcgccgaagca
ttgcgggacagcgaggccacgattcttctgggggtgccacggctttactcagcactctgg
agccgcctggaagcccgcctcaccgccggccgccggtggcggcagaaaatcctcaacggc
gtgatgggcgcctgcacgtttctacagcggcgtcttggggtgaatgccgggcgagtcatt
ttccgaccggtcatgaaacgcctggcgccgtcactgcgcctggccgtcagcggcggtgcg
gcgctggatgcccaactgggcgagcggctgcaggcgcttggctggacggtggccaccggt
tacggactgaccgagacctcgccgatactgaccatcaacgccccccgggacgcccgcctc
gataccgccggccgaccgctgcccggggttgaggtcagcatttccaatggcgaagtggtg
gcccgggggcccaatgtcttcgacggttacctgaacgaagccgagccccgccacgaagtc
attgacgaacagggctggtatcacacgggcgactccggggaattcgacgaagacggctat
ttgcgtctttccgggcggatttcctccaccattgtgctgcccggtggcgaaaacattgac
ccggagcgcatcgaaggcgctctcagtgaacagccggccgtgcgcgaagcaggcgtcctg
gaggtggatggccggctggcggcggtgctggtgcctgagcccggtgatgccgaggaaact
gaggaagcccgggacgagcgcctggatgaggccgtcggggaggcgatgagccacctcccc
gggcaccatgccatcggcgatgtccaggtcagcccggacccgttgccgcgaacccgactt
ggcaaactgcggcgccaccgcctggaggagctttatgagcagctgcagtccggtgaaaaa
gtcgccgagcaggcgcccatggacccggaagacatggcgccggaggaccagtcattgctg
gcggatccggtggccgcggccacctgggatttcctcgcggagcgatttgccaacgaaaga
ctgactccggacagccgactgcaccgggacctgggactggactccctcagctgggtggac
ctggggatggcgctccgggagcgcgccggcatcgagctgggagatgacgccatcggtcgt
gttgagaccgtccgcgatctgttgcaggaagccattcaggcggatcaaccggacggtgaa
gccgacgccggcggatccctgatcgatgccctgcaggcgcctgagtctctgctggacgat
gaggaccgccggctgctggcgccgcggggcccggtccgccatgcgaccgcccgcctggca
ctggggatctgcaacctgctcaaccgcttcgtggtccgcgtggaagtggaaggcgaatgg
ccagctacgggctcctacctgatcaccgcccgccacatcagcgcctacgaccccattgcc
ctgatcgggtccatgagccgtgatcgcatcgacccgctgttctgggccggctggactgga
atgatgttttcctcaccgccgcggcgctggttcagccacacggccagagtgctgcccatt
gacgccggcgccgcgccccggcgcagccttgcgctggccgcagcctgcctggatcgaggc
catccgttgatctggtttccggaaggtcagcggggcagcggggaggggctggaacctctg
cggcccgggatcgggctgctgctggaggcccatccggtgccggtggtgccggtctggatc
gaaggcaccgatgaggtgttgcccatcgggcggttcatcccccgccgtggccgggtgcgg
gtgcgcatcggcgaaccgctgtcatcggagtcatatggaacggatcgccgccgcatcctc
gatcaggtcgagaccgaaatgcggcggctgggcgaagaggagaaggacgagtcctga

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