Detailed information of BRAKERKREP00000012082.1 in Hydra viridissima

Genomic Location: not available for this species
NR annotation: XP_047123637.1, electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial [Hydra vulgaris]
Species Hydra viridissima · all data for this species · gene families

 Sequence
CDS
Transcript
Protein
 UniProt (Swiss-Prot top hit)
UniProt accessionDescription
Q2KIG0Electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial OS=Bos taurus OX=9913 GN=ETFDH PE=2 SV=1
P55931Electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial OS=Sus scrofa OX=9823 GN=ETFDH PE=1 SV=2
Q6UPE1Electron transfer flavoprotein-ubiquinone oxidoreductase, mitochondrial OS=Rattus norvegicus OX=10116 GN=Etfdh PE=1 SV=1
 Gene family
Family typeMembership / link
Orthogroup (gene family)OG0004780 (this species only)

 Pfam domain
Pfam accessionPfam nameDescriptionTypeSource
PF07992
all species →
Pyr_redox_2Pyridine nucleotide-disulphide oxidoreductaseDomainInterproscan
PF05187
all species →
ETF_QOElectron transfer flavoprotein-ubiquinone oxidoreductase, 4Fe-4SFamilyInterproscan
PF21162
all species →
ETFQO_UQ-bdETF-QO, ubiquinone-bindingDomainInterproscan

 InterPro
InterPro termTypeDescriptionSource
IPR017896
all species →
Domain4Fe-4S ferredoxin-type, iron-sulphur binding domainInterproscan
IPR023753
all species →
DomainFAD/NAD(P)-binding domainInterproscan
IPR040156
all species →
FamilyElectron transfer flavoprotein-ubiquinone oxidoreductaseInterproscan
IPR007859
all species →
DomainETF-QO/FixX, C-terminal domainInterproscan
IPR036188
all species →
Homologous_superfamilyFAD/NAD(P)-binding domain superfamilyInterproscan
IPR049398
all species →
DomainETF-QO/FixC, ubiquinone-bindingInterproscan

 PANTHER
PANTHER termDescriptionSource
PTHR10617
all species →
ELECTRON TRANSFER FLAVOPROTEIN-UBIQUINONE OXIDOREDUCTASEInterproscan

 Gene Ontology
GO termCategoryDescriptionSource
GO:0016491
all species →
Molecular Functionoxidoreductase activityInterproscan
GO:0004174
all species →
Molecular Functionelectron-transferring-flavoprotein dehydrogenase activityInterproscan
GO:0022900
all species →
Biological Processelectron transport chainInterproscan
GO:0031305
all species →
Cellular Componentobsolete integral component of mitochondrial inner membraneInterproscan
GO:0051536
all species →
Molecular Functioniron-sulfur cluster bindingInterproscan

Search by domain instead of by gene. Any accession above (InterPro, Pfam, PANTHER, GO, KEGG) can be used as a query on the Functional Domain Search page, which searches all 148 annotated genomes at once.
 KEGG pathway
KOEnzymeEnzyme IDPathwayMap IDSource
K00311ETFDH; electron-transferring-flavoprotein dehydrogenaseEC:1.5.5.1
Enzymes with EC numbers-deepkoala

Searching by KO or pathway ID across all species is available on the KEGG Pathway page.

Expression pattern (RNA-seq)

Transcript abundance of BRAKERKREP00000012082.1 across 29 RNA-seq samples of Hydra viridissima. This gene has no row in the species' RNA-seq expression matrix, so every value below is shown as zero — the matrix simply does not cover this transcript. Values are TPM (transcripts per million) from the StringTie quantification; one bar is one sample, grouped and coloured by condition, sorted by expression within each group.

29Samples
0TPM > 0
7Conditions
0.0Max TPM
0.0Mean TPM

By condition

ConditionSamplesTPM > 0 Mean TPMMax TPMMean, relative to max
whole body 18 0 0.00 0.00
Whole 6 0 0.00 0.00
aposymbioic hydra M9 strain · aposymbioic hydra rep1 1 0 0.00 0.00
aposymbioic hydra M9 strain · aposymbioic hydra rep2 1 0 0.00 0.00
symbioic hydra M9 strain · symbioic hydra rep1 1 0 0.00 0.00
symbioic hydra M9 strain · symbioic hydra rep2 1 0 0.00 0.00
unannotated 1 0 0.00 0.00

Per sample · hover a bar for the full sample record · show / hide the sample table

Source: CnidoSite RNA-seq expression matrices (HVIRI_TPM, StringTie quantification over 29 runs), joined to SRA sample metadata. Samples whose tissue/treatment is not recorded in the source metadata are grouped by the descriptor carried in the expression matrix itself.

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