Branchiostoma belcheri (Belcher's lancelet): 109476506
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Entry
109476506 CDS
T07532
Name
(RefSeq) aldehyde dehydrogenase family 16 member A1-like isoform X1
KO
K00128
aldehyde dehydrogenase (NAD+) [EC:
1.2.1.3
]
Organism
bbel
Branchiostoma belcheri (Belcher's lancelet)
Pathway
bbel00010
Glycolysis / Gluconeogenesis
bbel00053
Ascorbate and aldarate metabolism
bbel00071
Fatty acid degradation
bbel00280
Valine, leucine and isoleucine degradation
bbel00310
Lysine degradation
bbel00330
Arginine and proline metabolism
bbel00340
Histidine metabolism
bbel00380
Tryptophan metabolism
bbel00410
beta-Alanine metabolism
bbel00561
Glycerolipid metabolism
bbel00620
Pyruvate metabolism
bbel00770
Pantothenate and CoA biosynthesis
bbel01100
Metabolic pathways
bbel01240
Biosynthesis of cofactors
Module
bbel_M00135
GABA biosynthesis, eukaryotes, putrescine => GABA
Brite
KEGG Orthology (KO) [BR:
bbel00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
109476506
00053 Ascorbate and aldarate metabolism
109476506
00620 Pyruvate metabolism
109476506
09103 Lipid metabolism
00071 Fatty acid degradation
109476506
00561 Glycerolipid metabolism
109476506
09105 Amino acid metabolism
00280 Valine, leucine and isoleucine degradation
109476506
00310 Lysine degradation
109476506
00330 Arginine and proline metabolism
109476506
00340 Histidine metabolism
109476506
00380 Tryptophan metabolism
109476506
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
109476506
09108 Metabolism of cofactors and vitamins
00770 Pantothenate and CoA biosynthesis
109476506
Enzymes [BR:
bbel01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.1 With NAD+ or NADP+ as acceptor
1.2.1.3 aldehyde dehydrogenase (NAD+)
109476506
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Paralog
GFIT
Motif
Pfam:
Aldedh
DUF1487
Motif
Other DBs
NCBI-GeneID:
109476506
NCBI-ProteinID:
XP_019633033
UniProt:
A0A6P4ZGB0
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All DBs
Position
Unknown
AA seq
834 aa
AA seq
DB search
MAATTGNVRATGESVPEIFESMDYGPAPESPDVVRAWLDKHDRSFGHFINGKWVKPEGRK
TYQTKCPATGEVLATTIQGEDEDVELAVGAARKAFESWSTLPCHVRARYLYSIARNVQKH
QRILTVMESLDNGKPFRESRDADVPLVVRHFYHHAGWAQLMDTEMQGWKPIGVVGAIVPW
NFPLMLLTWKVCPALAMGNTVVLKPATYTRMSALMLAEICAEAGLPPGVFNVVTGNGRFG
SKLACHPDVDKVGFTGSTEVGQLLRRAVAGTGKKLSLELGGKSPIVVFDSADLDSAVEGV
VDAIWFNQGQVCSAGSRLLVQESVFNPFITKLKSRMNHLRVGDSLDKCIDMGALVDESQM
KTIKEYVEEARKEGAEVHQVSASFPKHDKGFFYPPTLITNVQTVSRVVREEIFGPVLVAL
PFRTAKEAIALGNNTNYGLGASVWTESIPLGLEAAVSLKAGAVWVNCHNMFDAAAGFGGY
KESGYGRDGGKEGLYEYAKPAWQDRPRPNCGEINYTTFAAKYGATVPPMPGSGTVGDKSL
TSDGAIVPGIDRTYKLYYGGGQKRPDGQYSRPVIGQEGRVLALVGEANRKDVRNAVEAAH
KAAPGWGKRAAHNRAQIVYYMAENLEIRRQEFTQQLQLMTGRSEEDCRREVDLAVQRLFY
WGAYCDKYGGTVQETTLYGVTAKIHEPMGVIGIACPEEYPLLGFVSLFAPAVVRGNAMIV
VPSQKHPLSALDFYQVFDTSDLPGGVVNILTGDRDHITKYLVEHQDIQAMWYFGSAEGSK
FVEWTSAENLKRTWVDYGIARDWTDAQQGQGEEFLYHATQAKNIWLPMGDIFAN
NT seq
2505 nt
NT seq
+upstream
nt +downstream
nt
atggctgccactactggaaacgtgcgggccacgggcgagtctgtccccgaaatcttcgag
tctatggactacggaccggctccggaaagtccagacgtcgtaagggcttggttggataaa
catgaccgcagctttggtcacttcatcaatgggaagtgggtaaaaccagaggggaggaag
acttaccagactaaatgtcctgctacaggtgaagttctggctacaacaatccagggtgag
gatgaggatgtagagttggccgtgggggcagcgaggaaggcgtttgagtcatggagcaca
ctaccctgtcatgtcagggctcgctacctgtacagtattgctcgtaatgtgcagaagcac
cagcgaatcctgacggttatggagagcctggataacgggaagccgttccgtgagtctcgt
gacgcggacgtccctctggtggtgcgacacttctaccaccacgccggctgggcgcagctc
atggacaccgagatgcaggggtggaaacctataggtgttgttggagcgattgttccgtgg
aacttccccctgatgttgctgacgtggaaggtttgccctgcgctggccatggggaacact
gtggtcctcaaacctgccacatacacacggatgtctgctctcatgttagccgagatctgc
gctgaagctgggctccctccaggtgtgtttaacgttgtgacaggtaacggcaggtttggg
agtaaactggcctgtcaccctgatgtggataaagttggctttactggctcaacggaggtt
ggacagctgctgaggcgtgcggtagcaggtacaggtaagaagttgtccctggagctggga
gggaagtctcccatcgtggtgtttgactcagcagacctggacagtgctgtggagggggtg
gtggacgccatctggttcaaccagggacaggtgtgcagtgcagggtcccggctgcttgtc
caggagtctgtgtttaaccccttcatcactaagctgaagtctcgtatgaaccacctgagg
gtcggggacagtctggacaagtgtatcgacatgggagctctggtggacgaaagtcagatg
aaaactataaaagagtatgtggaggaggccaggaaggaaggggctgaggttcaccaggta
tcagccagtttccccaaacatgacaaggggtttttctaccctcccaccctcatcactaat
gtgcagactgtgtcgagggtcgtcagagaagagatttttggcccagtgttggtagccctg
ccattccgtactgctaaggaggccatcgccctgggtaacaacactaactacgggctgggc
gccagcgtctggacagagtctattcctctgggactggaggctgcagttagcctgaaagca
ggcgctgtgtgggtgaactgtcacaacatgtttgatgcagcggctgggttcggaggctac
aaggagagtgggtacggacgagatgggggtaaagagggtctgtatgagtatgccaagcct
gcctggcaggacagacctcggcccaactgtggtgaaatcaactacacgacgtttgctgcc
aagtacggagctaccgtaccccccatgcctggcagtggtacagtcggagacaaaagtctg
acatcagatggagctatagtaccagggattgaccggacatacaaactgtactacggcgga
ggtcagaagaggccggatgggcagtactcgcggcctgtgattggtcaggaggggagggta
ctggcgctggtgggtgaggccaacaggaaggatgtcaggaacgctgtggaggcagcacac
aaggctgctcctggttgggggaagcgtgcagcccacaaccgtgcccagattgtgtactac
atggcggagaacttggagatccgccgacaggaattcactcagcagttacagctgatgact
ggccgcagtgaggaggactgtaggagagaagtggacctggcagtacagaggctgttctac
tggggagcctactgtgacaagtatggaggaactgtgcaggaaacgaccttatatggagtc
acagcaaagatccatgagccaatgggagtgatcggtatagcctgtcctgaggagtaccca
ctgctggggttcgtgtcgctgtttgcgcccgccgtggtccgtgggaacgccatgattgtc
gtacccagtcagaaacatccgctcagtgccttggacttctaccaggtgtttgacacatct
gacctgccagggggcgttgtgaacatcctgacaggagacagggaccacatcaccaagtac
ctggtggagcatcaggacatacaggccatgtggtacttcggctctgctgaggggtcaaag
ttcgtagagtggacctctgcggagaacctgaagcgtacctgggtggattatgggatagct
cgtgactggacagacgcccagcagggccagggggaggagtttctgtatcacgccacccag
gccaagaacatctggctgccaatgggagacatctttgctaattga
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