Alligator sinensis (Chinese alligator): 102376159
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Entry
102376159 CDS
T02922
Name
(RefSeq) acyl-coenzyme A amino acid N-acyltransferase 1-like
KO
K00659
bile acid-CoA:amino acid N-acyltransferase [EC:
2.3.1.65
3.1.2.27
3.1.2.2
]
Organism
asn
Alligator sinensis (Chinese alligator)
Pathway
asn00120
Primary bile acid biosynthesis
asn00430
Taurine and hypotaurine metabolism
asn01040
Biosynthesis of unsaturated fatty acids
asn01100
Metabolic pathways
asn04146
Peroxisome
Brite
KEGG Orthology (KO) [BR:
asn00001
]
09100 Metabolism
09103 Lipid metabolism
00120 Primary bile acid biosynthesis
102376159
01040 Biosynthesis of unsaturated fatty acids
102376159
09106 Metabolism of other amino acids
00430 Taurine and hypotaurine metabolism
102376159
09140 Cellular Processes
09141 Transport and catabolism
04146 Peroxisome
102376159
Enzymes [BR:
asn01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.65 bile acid-CoA:amino acid N-acyltransferase
102376159
3. Hydrolases
3.1 Acting on ester bonds
3.1.2 Thioester hydrolases
3.1.2.2 palmitoyl-CoA hydrolase
102376159
3.1.2.27 choloyl-CoA hydrolase
102376159
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GFIT
Motif
Pfam:
BAAT_C
Bile_Hydr_Trans
DLH
Peptidase_S9
FSH1
Motif
Other DBs
NCBI-GeneID:
102376159
NCBI-ProteinID:
XP_006036647
UniProt:
A0A1U7S8C3
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All DBs
Position
Unknown
AA seq
420 aa
AA seq
DB search
MAKLTVTPRTSLVDEPVKIHVSGLAPFKLVTLQASLTDEKGVLFQSRAFYQSSESGEVDL
EQAAALGGDYAGVHPMGLFQFLKPEKMFHRLMKRDVMQSPFHVRLDLFSSFHLVSTPCDQ
PVTSQTVERWHVAPGVQRILIRDGRVRGALFLPPGEGPFPGLIDLFGGVGGLIEFRASLL
ASRGFAALALAYFGYEDLPEILLEVDLEYFEEAINVLLRHPKVGGPGVGLVSISKGAEIA
LAMASFLPKIKAVVSINSTHALHGMPLRYRNLHINPIPYKIEYIRFTPLGLMELSNMVNV
IHTEESQESILPVEQAEAKILFIVGENDRNYNSKAFAEKAMERMRRHGRKNYGMLCYPGA
GHLIEPPGSPFCHHSWSFFFFRPVVWGGEPQSHVAAQEHSWKEIQKFLWQHLHPAGSSRL
NT seq
1263 nt
NT seq
+upstream
nt +downstream
nt
atggctaagctcacagtcaccccaaggacatcccttgttgatgaaccagtgaaaatccat
gtctctggtttggctccctttaagctggtgaccctccaagcctctttgacagatgagaag
ggggtgctcttccagtccagagctttctaccagtccagtgagtctggtgaggttgatttg
gagcaagctgctgctctgggaggagattatgctggcgtgcaccccatgggtctcttccag
ttcttgaaaccggaaaagatgtttcacaggttgatgaaacgagatgtgatgcagagtcca
ttccacgtgcgcctggatttgttcagctcattccacttggtttccacaccctgtgatcag
cctgtgacaagccagactgtggaaagatggcatgtggcaccgggagtccaacgaatcctg
atcagggacggcagggtgcgtggggccctcttcctcccaccaggagaaggtcctttccca
gggctgattgacctgttcggcggtgtgggtggactcattgaatttcgagccagtcttctc
gccagtcgtggtttcgctgcgcttgccctagcgtactttggttatgaagacctgcctgag
attctacttgaggtggatctggaatactttgaggaagccatcaacgtcctcttgagacac
cccaaggtaggagggccaggggttggcttggtctcaatatccaaaggtgctgagattgca
ctggccatggcatcatttttgcccaagatcaaagcagtagtttctattaactcaacccat
gccctccatgggatgccactccgctaccggaatctgcatatcaatccaatcccttacaag
atagaatatatccggttcacacccctgggactgatggaactctctaacatggtcaatgtc
attcacactgaagaaagtcaagagagcatcctacctgtagaacaagctgaggccaaaatc
ctcttcattgtgggagagaacgacaggaactacaacagcaaagcatttgccgagaaagcg
atggagaggatgaggaggcatggaagaaagaactatggaatgctttgctatccaggtgct
ggacacctgattgagccgccagggtcacctttctgccaccactcatggagcttctttttc
ttcaggcctgtggtatggggaggggaaccccagtcccatgttgcagcacaggagcattcc
tggaaggagatccagaaattcctctggcaacacctccacccagctggaagcagcaggctt
tga
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