UniGene Name: sp_v3.0_unigene75925
Length: 176 nt
UniGene Fasta |
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>sp_v3.0_unigene75925
G |
Ace file of the UniGene sp_v3.0_unigene75925 |
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Annotations |
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Source | Descriptions | Term | Type | e value | Identity |
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AutoFact | T25K16.8 n=3 Tax=Arabidopsis RepID=Q9MAM6_ARATH | - | - | 6.0e-17 | 91% |
FL-Next | tr=Putative uncharacterized protein; Picea sitchensis (Sitka spruce) (Pinus sitchensis). | - | - | 0.0 | 88% |
Sma3 | Pyruvate dehydrogenase E1 component subunit alpha | - | - | 4.823e-09 | - |
Source | ECs | Term | Type | e value | Identity |
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Sma3 | Pyruvate dehydrogenase (acetyl-transferring). | EC:1.2.4.1 | - | 2.285e-12 | - |
Source | KEGGs | Term | Type | e value | Identity |
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Sma3 | Glycolysis / Gluconeogenesis | 00010 | 2.285e-12 | % | |
Sma3 | Citrate cycle (TCA cycle) | 00020 | 2.285e-12 | % | |
Sma3 | Valine, leucine and isoleucine biosynthesis | 00290 | 2.285e-12 | % | |
Sma3 | Pyruvate metabolism | 00620 | 2.285e-12 | % | |
Sma3 | Butanoate metabolism | 00650 | 2.285e-12 | % | |
Sma3 | Biosynthesis of phenylpropanoids | 01061 | 2.285e-12 | % | |
Sma3 | Biosynthesis of terpenoids and steroids | 01062 | 2.285e-12 | % | |
Sma3 | Biosynthesis of alkaloids derived from shikimate pathway | 01063 | 2.285e-12 | % | |
Sma3 | Biosynthesis of alkaloids derived from ornithine, lysine and nicotinic acid | 01064 | 2.285e-12 | % | |
Sma3 | Biosynthesis of alkaloids derived from histidine and purine | 01065 | 2.285e-12 | % | |
Sma3 | Biosynthesis of alkaloids derived from terpenoid and polyketide | 01066 | 2.285e-12 | % | |
Sma3 | Biosynthesis of plant hormones | 01070 | 2.285e-12 | % | |
Sma3 | Metabolic pathways | 01100 | 2.285e-12 | % | |
Sma3 | Biosynthesis of secondary metabolites | 01110 | 2.285e-12 | % |
Source | Gene names |
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Sma3 | At1g01090; Grc000122; H0716A07.7; OSJNBa0020P07.11; Os04g0119400; OsI_14647; OsJ_13591; PHYPADRAFT_220786; PHYPADRAFT_225446; POPTRDRAFT_755473; RCOM_1339660; odpA; pdhA; |
Source | GOs | Term | Type | e value | Identity |
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Sma3 | chloroplast | GO:0009507 | Cellular Component | 0.0 | - |
Sma3 | chloroplast envelope | GO:0009941 | Cellular Component | 0.0 | - |
Sma3 | intracellular membrane-bounded organelle | GO:0043231 | Cellular Component | 0.0 | - |
Sma3 | nucleotide binding | GO:0000166 | Molecular Function | 0.0 | - |
Sma3 | nucleic acid binding | GO:0003676 | Molecular Function | 0.0 | - |
Sma3 | pyruvate dehydrogenase (acetyl-transferring) activity | GO:0004739 | Molecular Function | 0.0 | - |
Sma3 | oxidoreductase activity, acting on the aldehyde or oxo group of donors, disulfide as acceptor | GO:0016624 | Molecular Function | 0.0 | - |
Sma3 | glycolysis | GO:0006096 | Biological Process | 0.0 | - |
Sma3 | metabolic process | GO:0008152 | Biological Process | 0.0 | - |
Sma3 | oxidation-reduction process | GO:0055114 | Biological Process | 0.0 | - |
Source | InterPros | Term | Type | e value | Identity |
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Sma3 | RNA recognition motif domain | IPR000504 | - | 0.0 | - |
Sma3 | Dehydrogenase, E1 component | IPR001017 | - | 0.0 | - |
Sma3 | Nucleotide-binding, alpha-beta plait | IPR012677 | - | 0.0 | - |
Sma3 | Pyruvate dehydrogenase (acetyl-transferring) E1 component, alpha subunit, subgroup y | IPR017597 | - | 0.0 | - |
Source | Species | ID | Description | e value | Identity |
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ATG | Arabidoptis thaliana | AT1G01090.1 | PDH-E1 ALPHA pyruvate dehydrogenase E1 alpha chr1:47705-49166 REVERSE LENGTH=428 | 6.0e-23 | 91% |
RefSeq | Arabidopsis thaliana | NP_171617.1 | pyruvate dehydrogenase E1 component subunit alpha [Arabidopsis thaliana] | 8.0e-23 | 91% |
RefSeq | Populus trichocarpa | XP_002301442.1 | predicted protein [Populus trichocarpa] | 3.0e-23 | 91% |
Full-Lengther Next Prediction |
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Fln status: Internal
Fln database: coniferopsida.fasta
Fln subject: B8LRC3
Fln msg: Unexpected stop codon in the beginning of your sequence, Distance to subject end: 243 aas, your sequence is shorter than subject: 58 - 438
Fln protein:
T
Protein Length:
59
Fln nts:
G
Fln Alignment:
GD4IA4402EQO1A___HD-LCKYYRHHVHALSKGVSARAVMSELFGKTTGCCRGQGGSMHMFSKEHGV
B8LRC3_______________HDSVCSTYRDHVHALSKGVPARAVMSELFGKTTGCCRGQGGSMHMFSKEHGV
Biología Molecular y Biotecnología de Plantas, Facultad de Ciencias y Plataforma Andaluza de Bioinformática, Universidad de Málaga, E-29071 Málaga, Spain