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RHOS4:Q3IXP7
Contents
Species (Taxon ID) | Rhodobacter sphaeroides (strain ATCC 17023 / 2.4.1 / NCIB 8253 / DSM158). (272943) | |
Gene Name(s) | No Information Provided. | |
Protein Name(s) | Nucleoside-diphosphate-sugar epimerase (ECO:0000313 with EMBL:ABA80687.1) | |
External Links | ||
UniProt | Q3IXP7 | |
EMBL | CP000144 | |
RefSeq | WP_011339018.1 YP_354588.1 | |
ProteinModelPortal | Q3IXP7 | |
STRING | 272943.RSP_3070 | |
EnsemblBacteria | ABA80687 | |
GeneID | 3721347 | |
KEGG | rsp:RSP_3070 | |
PATRIC | 23156283 | |
eggNOG | COG0702 | |
HOGENOM | HOG000251228 | |
OMA | GRYYATE | |
OrthoDB | EOG6K13Q2 | |
BioCyc | RSPH272943:GJAS-3206-MONOMER | |
Proteomes | UP000002703 | |
GO | GO:0033728 | |
Gene3D | 3.40.50.720 | |
InterPro | IPR016040 |
Annotations
Qualifier | GO ID | GO term name | Reference | ECO ID | ECO term name | with/from | Aspect | Extension | Notes | Status |
---|---|---|---|---|---|---|---|---|---|---|
GO:0030494 |
bacteriochlorophyll biosynthetic process |
ECO:0000315 |
P |
Table 2: R. sphaeroides rsp_3070 was able to restore synthesis of the WT (wild-type) C8-ethyl chlorophyll a. |
complete | |||||
involved_in |
GO:0030494 |
bacteriochlorophyll biosynthetic process |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0033728 |
divinyl chlorophyllide a 8-vinyl-reductase activity |
ECO:0000501 |
evidence used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0055114 |
oxidation-reduction process |
ECO:0000323 |
imported automatically asserted information used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0016491 |
oxidoreductase activity |
ECO:0000323 |
imported automatically asserted information used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
Notes
References
See Help:References for how to manage references in GONUTS.
- ↑ 1.0 1.1 Canniffe, DP et al. (2013) Identification of an 8-vinyl reductase involved in bacteriochlorophyll biosynthesis in Rhodobacter sphaeroides and evidence for the existence of a third distinct class of the enzyme. Biochem. J. 450 397-405 PubMed GONUTS page