Detailed information of BRAKERKREP00000009502.1 in Hydra viridissima

Genomic Location: not available for this species
NR annotation: XP_047141674.1, ARF GTPase-activating protein GIT1 isoform X2 [Hydra vulgaris]
Species Hydra viridissima · all data for this species · gene families

 Sequence
CDS
Transcript
Protein
 UniProt (Swiss-Prot top hit)
UniProt accessionDescription
Q14161ARF GTPase-activating protein GIT2 OS=Homo sapiens OX=9606 GN=GIT2 PE=1 SV=2
Q66H91ARF GTPase-activating protein GIT2 OS=Rattus norvegicus OX=10116 GN=Git2 PE=1 SV=1
Q9JLQ2ARF GTPase-activating protein GIT2 OS=Mus musculus OX=10090 GN=Git2 PE=1 SV=2
 Gene family
Family typeMembership / link
Orthogroup (gene family)OG0004494 (this species only)

 Pfam domain
Pfam accessionPfam nameDescriptionTypeSource
PF12796
all species →
Ank_2Ankyrin repeats (3 copies)RepeatInterproscan
PF08518
all species →
GIT_SHDSpa2 homology domain (SHD) of GITFamilyInterproscan
PF01412
all species →
ArfGapPutative GTPase activating protein for ArfDomainInterproscan

 InterPro
InterPro termTypeDescriptionSource
IPR001164
all species →
DomainArf GTPase activating proteinInterproscan
IPR013724
all species →
DomainGIT, Spa2 homology (SHD) domainInterproscan
IPR002110
all species →
RepeatAnkyrin repeatInterproscan
IPR038508
all species →
Homologous_superfamilyArfGAP domain superfamilyInterproscan
IPR047161
all species →
FamilyARF GTPase-activating protein Git-likeInterproscan
IPR037278
all species →
Homologous_superfamilyARFGAP/RecO-like zinc fingerInterproscan
IPR036770
all species →
Homologous_superfamilyAnkyrin repeat-containing domain superfamilyInterproscan

 PANTHER
PANTHER termDescriptionSource
PTHR46097
all species →
G PROTEIN-COUPLED RECEPTOR KINASE INTERACTING ARFGAPInterproscan

 Gene Ontology
GO termCategoryDescriptionSource
GO:0005096
all species →
Molecular FunctionGTPase activator activityInterproscan
GO:0005515
all species →
Molecular Functionprotein bindingInterproscan
GO:0007420
all species →
Biological Processbrain developmentInterproscan
GO:0008277
all species →
Biological Processregulation of G protein-coupled receptor signaling pathwayInterproscan
GO:0031267
all species →
Molecular Functionsmall GTPase bindingInterproscan
GO:0032012
all species →
Biological Processregulation of ARF protein signal transductionInterproscan
GO:0036465
all species →
Biological Processsynaptic vesicle recyclingInterproscan
GO:0045202
all species →
Cellular ComponentsynapseInterproscan

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
No KEGG orthology assignment for BRAKERKREP00000009502.1.

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

Expression pattern (RNA-seq)

Transcript abundance of BRAKERKREP00000009502.1 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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