Aop_g32270 (ALDH5F1, SSADH, SSADH1)


Aliases : ALDH5F1, SSADH, SSADH1

Description : EC_1.2 oxidoreductase acting on aldehyde or oxo group of donor & original description: none


Gene families : OG0000126 (OrthoFinder output from all 47 species) Phylogenetic Tree(s): OG0000126_tree

Sequence : coding (download), protein (download)


Attention: This gene has low abundance.


Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.


Type Description Actions
Neighborhood HRR: Aop_g32270

Target Alias Description ECC score Gene Family Method Actions
AMTR_s00055p00205880 ALDH10A9,... Secondary metabolism.nitrogen-containing secondary... 0.02 OrthoFinder output from all 47 species
Sam_g27437 No alias EC_1.2 oxidoreductase acting on aldehyde or oxo group of... 0.03 OrthoFinder output from all 47 species
Smo266598 ALDH2B, ALDH2B7 Aldehyde dehydrogenase family 2 member B7, mitochondrial... 0.03 OrthoFinder output from all 47 species
Spa_g21322 ALDH2B, ALDH2B7 EC_1.2 oxidoreductase acting on aldehyde or oxo group of... 0.03 OrthoFinder output from all 47 species

Type GO Term Name Evidence Source
MF GO:0016491 oxidoreductase activity IEA Interproscan
Type GO Term Name Evidence Source
BP GO:0000096 sulfur amino acid metabolic process IEP HCCA
MF GO:0000287 magnesium ion binding IEP HCCA
MF GO:0004019 adenylosuccinate synthase activity IEP HCCA
MF GO:0004749 ribose phosphate diphosphokinase activity IEP HCCA
BP GO:0006139 nucleobase-containing compound metabolic process IEP HCCA
BP GO:0006164 purine nucleotide biosynthetic process IEP HCCA
BP GO:0006511 ubiquitin-dependent protein catabolic process IEP HCCA
BP GO:0006534 cysteine metabolic process IEP HCCA
BP GO:0006753 nucleoside phosphate metabolic process IEP HCCA
BP GO:0006790 sulfur compound metabolic process IEP HCCA
BP GO:0009069 serine family amino acid metabolic process IEP HCCA
BP GO:0009092 homoserine metabolic process IEP HCCA
BP GO:0009117 nucleotide metabolic process IEP HCCA
BP GO:0009165 nucleotide biosynthetic process IEP HCCA
MF GO:0016701 oxidoreductase activity, acting on single donors with incorporation of molecular oxygen IEP HCCA
MF GO:0016703 oxidoreductase activity, acting on single donors with incorporation of molecular oxygen, incorporation of one atom of oxygen (internal monooxygenases or internal mixed function oxidases) IEP HCCA
MF GO:0016746 acyltransferase activity IEP HCCA
MF GO:0016778 diphosphotransferase activity IEP HCCA
MF GO:0016879 ligase activity, forming carbon-nitrogen bonds IEP HCCA
BP GO:0018130 heterocycle biosynthetic process IEP HCCA
MF GO:0018580 nitronate monooxygenase activity IEP HCCA
BP GO:0019346 transsulfuration IEP HCCA
BP GO:0019438 aromatic compound biosynthetic process IEP HCCA
BP GO:0019637 organophosphate metabolic process IEP HCCA
MF GO:0019899 enzyme binding IEP HCCA
BP GO:0019941 modification-dependent protein catabolic process IEP HCCA
MF GO:0030170 pyridoxal phosphate binding IEP HCCA
MF GO:0031625 ubiquitin protein ligase binding IEP HCCA
BP GO:0034654 nucleobase-containing compound biosynthetic process IEP HCCA
BP GO:0043632 modification-dependent macromolecule catabolic process IEP HCCA
BP GO:0044265 cellular macromolecule catabolic process IEP HCCA
BP GO:0044281 small molecule metabolic process IEP HCCA
MF GO:0044389 ubiquitin-like protein ligase binding IEP HCCA
BP GO:0050667 homocysteine metabolic process IEP HCCA
MF GO:0051536 iron-sulfur cluster binding IEP HCCA
MF GO:0051540 metal cluster binding IEP HCCA
BP GO:0055086 nucleobase-containing small molecule metabolic process IEP HCCA
MF GO:0070279 vitamin B6 binding IEP HCCA
BP GO:0072522 purine-containing compound biosynthetic process IEP HCCA
BP GO:0090407 organophosphate biosynthetic process IEP HCCA
BP GO:1901293 nucleoside phosphate biosynthetic process IEP HCCA
BP GO:1901362 organic cyclic compound biosynthetic process IEP HCCA
BP GO:1901605 alpha-amino acid metabolic process IEP HCCA
InterPro domains Description Start Stop
IPR015590 Aldehyde_DH_dom 62 524
No external refs found!