Protein detail

KANL2

KAT8 regulatory NSL complex subunit 2 (NSL complex protein NSL2) (Non-specific lethal 2 homolog)

Entry name
KANL2
UniProt ID
EVMP confidence score
0.38
Supporting publications (n)
2
Transmembrane count
Protein classification
Essential proteinsPredicted 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
KAT8 regulatory NSL complex subunit 2 (NSL complex protein NSL2) (Non-specific lethal 2 homolog)
Protein Class (2)
Essential proteinsPredicted intracellular proteins
Protein Function
Predicted intracellular proteins
Entrez Gene Symbol
Gene Synonym (3)
C12orf41FLJ20436NSL2
Gene Description
KAT8 regulatory NSL complex subunit 2
Chromosome
12
Position
48653211-48682238
Supporting publications (n)
2
EVMP confidence score
0.38
Fluorescence & Localization5
Tissue SpecificbrainCell SpecificBergmann gliaSingle-Nuclei Brain SpecificBergmann gliaSecretome LocationSecreted - unknown locationSecretome FunctionCell adhesion
Function & Pathway6
Relations & Evidence11

Ligand-Receptor Signaling (4)

4 records.

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

Isolation & Detection Technology (1)

1 record.

EV Isolation MethodDetection MethodNumber of ReferencesReferences
Differential UltracentrifugationMass spectrometry;RNA Sequencing;Flow cytometry141307968
Sequence, Structure & Domains8

Sequences

Length
492
Mass
55,042
Sequence
MNRIRIHVLPTNRGRITPVPRSQEPLSCAFTHRPCSHPRLEGQEFCIKHILEDKNAPFKQCSYISTKNGKRCPNAAPKPEKKDGVSFCAEHVRRNALALHAQMKKTNPGPVGETLLCQLSSYAKTELGSQTPESSRSEASRILDEDSWSDGEQEPITVDQTWRGDPDSEADSIDSDQEDPLKHAGVYTAEEVALIMREKLIRLQSLYIDQFKRLQHLLKEKKRRYLHNRKVEHEALGSSLLTGPEGLLAKERENLKRLKCLRRYRQRYGVEALLHRQLKERRMLATDGAAQQAHTTRSSQRCLAFVDDVRCSNQSLPMTRHCLTHICQDTNQVLFKCCQGSEEVPCNKPVPVSLSEDPCCPLHFQLPPQMYKPEQVLSVPDDLEAGPMDLYLSAAELQPTESLPLEFSDDLDVVGDGMQCPPSPLLFDPSLTLEDHLVKEIAEDPVDILGQMQMAGDGCRSQGSRNSEKASAPLSQSGLATANGKPEPTSIS
Alternative Products
Event=Alternative splicing; Named isoforms=2; Name=1; IsoId=Q9H9L4-1; Sequence=Displayed; Name=2; IsoId=Q9H9L4-4; Sequence=VSP_042530, VSP_042531
Alternative Sequence
145..155; EDSWSDGEQEP -> MLVSTQQKKWP (in isoform 2); 156..492; Missing (in isoform 2)

3D Structural Models

3D Structure
X-ray crystallography (1)

Domain & Motif Annotations

Compositional Bias
135..144; Basic and acidic residues; 167..178; Acidic residues
Region
126..182; Disordered; 308..364; Required for interaction with other NSL complex members; 455..492; Disordered
Clinical Relevance4
Interaction Protein (3)
ENSG00000120071ENSG00000129292ENSG00000196363
Interaction Count
3
Interaction Dataset (3)
intact_biogrid_bioplexbiogrid_bioplexintact_biogrid
Supporting Publications2
PMIDTitleAbstract
37483339Neuronally enriched microvesicle RNAs are differentially expressed in the serums of Parkinson's patients.In serum CD171 enriched exosomes and microvesicles, a panel of 29 smRNAs was expressed differentially between PD and controls (false discovery rate (FDR) < 0.05).
38624007Label-Free Multiplex Profiling of Exosomal Proteins with a Deep Learning-Driven 3D Surround-Enhancing SERS Platform for Early Cancer Diagnosis.Combining this 3D se-SERS with a deep learning model, we successfully quantitatively profiled seven proteins including CD63, CD81, CD9, CD151, CD171, TSPAN8, and PD-L1 on the surface of plasma exosomes from patients, which can predict the occurrence and advancement of lung cancer.