| Entry |
|
| Name |
(RefSeq) hypothetical protein
|
| KO |
|
| Organism |
|
| Pathway |
| bor00053 | Ascorbate and aldarate metabolism |
| bor00280 | Valine, leucine and isoleucine degradation |
| bor00330 | Arginine and proline metabolism |
| bor00770 | Pantothenate and CoA biosynthesis |
| bor01110 | Biosynthesis of secondary metabolites |
|
| Brite |
KEGG Orthology (KO) [BR:bor00001]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
COCMIDRAFT_37529
00053 Ascorbate and aldarate metabolism
COCMIDRAFT_37529
00620 Pyruvate metabolism
COCMIDRAFT_37529
09103 Lipid metabolism
00071 Fatty acid degradation
COCMIDRAFT_37529
00561 Glycerolipid metabolism
COCMIDRAFT_37529
09105 Amino acid metabolism
00280 Valine, leucine and isoleucine degradation
COCMIDRAFT_37529
00310 Lysine degradation
COCMIDRAFT_37529
00330 Arginine and proline metabolism
COCMIDRAFT_37529
00340 Histidine metabolism
COCMIDRAFT_37529
00380 Tryptophan metabolism
COCMIDRAFT_37529
09106 Metabolism of other amino acids
00410 beta-Alanine metabolism
COCMIDRAFT_37529
09108 Metabolism of cofactors and vitamins
00770 Pantothenate and CoA biosynthesis
COCMIDRAFT_37529
Enzymes [BR:bor01000]
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+)
COCMIDRAFT_37529
|
| SSDB |
|
| Motif |
|
| Other DBs |
|
| LinkDB |
|
| Position |
Unknown
|
| AA seq |
480 aa
MRTQLFINNEYVDAQNEETLAVYSPHDESLVADQLQIAGQEDVDKAVAAARAAFHGEWSR
WVPVQRSAVMLKFADLVEQHADELALWESKCMGQAISTTKAIYQILIASFRYYAGWTDKL
NGEQYPSHDGFYRIVQFDPIGVCAGIGAWNGAPGFFGSKVATAIAVGCTVIFKGSEKTPI
GMLQLGDLVKEAGFPPGVINIITGPGSTGAMLASHMDINKISFTGSLATGKKIQELSAKS
NLKRVVLELGGKSPSLIFDDANLNNALHHHSLNFLSNSGQACVAATRVFIQGNIAEAFIE
QLKFRFEQVFQTAGSPLDPKTVFGPLADSMQFERVMNYIEIGKQESELITGGKRHSYSNS
GYYVEPTIFLNPKDDAHIYREEIFGPVITIKTFKTEEEAIKLANDTCFGLSACIYTALTS
RALRIAKQIDAGNVNINSSQSFNIGVPFGGNKQSGIGREGGRQGLMHFVEAKTISINMNV |
| NT seq |
1443 nt +upstreamnt +downstreamnt
atgcgcacccaacttttcatcaacaacgaatatgtggacgctcaaaatgaagaaacattg
gctgtctacagcccccacgacgaatcacttgtagcagatcagcttcaaatcgccggtcag
gaagatgtggataaagctgttgcagcagcgcgagcagctttccacggagaatggtctaga
tgggtaccggtgcaaagatcggcagtcatgctaaagtttgcggatctcgtcgaacagcat
gctgatgagctagctctttgggaaagcaagtgtatgggccaggccatctctaccacgaaa
gctatctaccagatactcattgctagcttcagatattacgccggatggaccgacaaactg
aatggcgagcaatatccgtcgcacgacggcttttacaggattgtccagtttgaccctatc
ggagtgtgtgcggggattggtgcctggaatggggcgccaggattttttggctccaaagtt
gctacagctatcgctgttggatgtaccgtcatcttcaaaggatcggaaaagactccgatt
ggcatgcttcaacttggtgacctcgtcaaagaggctggcttccctccaggcgtcatcaac
attatcactggtcccggctctacaggagctatgcttgcaagtcacatggacatcaataag
atatccttcacgggatcgcttgctactgggaaaaagattcaggaactttctgcaaagagc
aatctgaaacgagttgtccttgaactcggagggaaatctcccagtctgatcttcgatgac
gcaaacttgaacaacgctcttcaccaccatagcctcaactttctttccaatagtggacag
gcatgcgtagccgcaacaagagtttttattcagggaaatatcgctgaggccttcattgag
cagctgaagtttcggtttgaacaagtctttcagactgctggatcgcctctggacccaaag
acagtctttggaccactagccgacagcatgcaattcgaacgcgtgatgaactacatcgag
attgggaagcaggaatccgagctcatcactggcggaaaacgacacagctactcaaacagc
ggatactacgtggagccgactattttcctgaaccccaaggacgacgctcacatttatcgc
gaggaaatttttggcccagtgattactatcaagactttcaaaacagaagaggaagctatt
aaattggctaacgacacatgttttggtctttccgcgtgcatctatactgctttgaccagc
cgtgctctccgtattgcaaagcagattgacgccggcaatgttaacatcaattcttctcag
tcatttaacattggtgttccgtttggcggtaacaagcagagcggcattggacgggagggt
ggacggcaagggctgatgcatttcgttgaagcaaagactataagcatcaatatgaatgtt
tag |