Protein detail

RHG40

Rho GTPase-activating protein 40 (Rho-type GTPase-activating protein 40)

Entry name
RHG40
UniProt ID
EVMP confidence score
0.38
Supporting publications (n)
1
Transmembrane count
Protein classification
Predicted intracellular proteins
EVMP confidence score

Annotation confidence score; open for threshold definitions.

Extremely high >= 0.85High >= 0.70Medium >= 0.55Low >= 0.40
Basic Information11
Protein Names
Rho GTPase-activating protein 40 (Rho-type GTPase-activating protein 40)
Protein Class
Predicted intracellular proteins
Protein Function
Predicted intracellular proteins
Entrez Gene Symbol
Gene Synonym (2)
C20orf95dJ1100H13.4
Gene Description
Rho GTPase activating protein 40
Chromosome
20
Position
38601809-38651035
Supporting publications (n)
1
EVMP confidence score
0.38
Fluorescence & Localization5
Tissue Specificbone marrowCell SpecificcDCSingle-Nuclei Brain Specificcentral nervous system macrophageBlood Cell SpecificeosinophilBlood Lineage Specificgranulocytes
Function & Pathway6
Relations & Evidence5

Ligand-Receptor Signaling (2)

2 records.

CategoryParentDatabaseTransmitterReceiverSecretedPlasma Membrane (Transmembrane)Plasma Membrane (Peripheral)
intracellularintracellularGO_IntercellNoNoNoNoNo
intracellularintracellularOmniPathNoNoNoNoNo

Regulatory Interaction Network (2)

2 records.

Source Protein SymbolSource UniProt IDTarget Protein SymbolTarget UniProt IDIs DirectedIs StimulationIs InhibitionDatabaseReferences
RHG40Q5TG30RHOAP61586YesNoYesSIGNORSIGNOR:32203420
RHG40Q5TG30CDC42P60953YesNoYesSIGNORSIGNOR:32203420

Isolation & Detection Technology (1)

1 record.

EV Isolation MethodDetection MethodNumber of ReferencesReferences
Differential UltracentrifugationUltrafiltration / Tangential Flow FiltrationSize Exclusion ChromatographyMass spectrometry3387318683035349237922300
Sequence, Structure & Domains6

Sequences

Length
675
Mass
74,488
Sequence
MAEPALLPAAQMERLAPGPLASPCPRIPRARIARRCAQRWADLGCSSGPSSGRMDQLPQKNLLRLHPAGSAGCSTGVESSSMDGFWMEVEQIQQRDELREEDSGGNEGQLPEEGEAESQWLQDTGLSGLLGGLGLDGDHQELLSTLTQTQVAAVCRRLDIYARSVRRQHKTPVRDVRDVFGVFNSGKMSSENGDSGMKGAQLSSGASKFPPAAEPGGLQEQAGREEAFNMDSAYSEQAAVLLQRSRPSRGGTSAWGKCSLPKFTVPKGRLGVTRIGDLSLQDMRKVPSLALIELTALCDILGLDLKRSKAGKWKAAETRLFGVPLDSLLEADHKVLPSTQVPLVLQALLSCLEKRGLDMEGILRVPGSQARVKGLEQKLERDFYAGLFSWDEVHHNDASDLLKRFIRKLPTPLLTAEYLPAFAVVPNIPNLKQRLQVLHLLILILPEPNRNALKALLEFLRKVVAREQHNKMTLRNVSTVMAPNLFLHQGRPPKLPKGKEKQLAEGAAEVVQIMVHYQDLLWTVASFLVAQVRKLNDSSSRRPQLCDAGLKTWLRRMHADRDKAGDGLEATPKVAKIQVVWPIKDPLKVPLTPSTKVAHVLRQFTEHLSPGSKGQEDSEDMDSLLLHHRSMESANILLYEVGGNINEHRLDPDAYLLDLYRANPHGEWVLKQNPT

Domain & Motif Annotations

Compositional Bias
103..116; Acidic residues
Domain (FT)
323..522; Rho-GAP
Region
95..118; Disordered; 187..218; Disordered
Clinical Relevance1
Supporting Publications1
PMIDTitleAbstract
38731868The Deep Proteomics Approach Identified Extracellular Vesicular Proteins Correlated to Extracellular Matrix in Type One and Two Endometrial Cancer.No abstract available