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PAK6
HPA
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Gene name
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Brain region
Category
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Brain region
Category
Tau score
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Interacting gene (ensg_id)
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  • SUMMARY

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  • STRUCT & INT

  • PAK6
STRUCTURE & INTERACTION STRUCTURE INTERACTION
Protein structures
Protein interactions
Human metabolism
GENERAL INFORMATIONi

General description of the gene and the encoded protein(s) using information from HGNC and Ensembl, as well as predictions made by the Human Protein Atlas project.

Gene namei

Official gene symbol, which is typically a short form of the gene name, according to HGNC.

PAK6
Synonyms PAK5
Gene descriptioni

Full gene name according to HGNC.

P21 (RAC1) activated kinase 6
Protein classi

Assigned HPA protein class(es) for the encoded protein(s).

Enzymes
Plasma proteins
RAS pathway related proteins
Predicted locationi

All transcripts of all genes have been analyzed regarding the location(s) of corresponding protein based on prediction methods for signal peptides and transmembrane regions.

  • Genes with at least one transcript predicted to encode a secreted protein, according to prediction methods or to UniProt location data, have been further annotated and classified with the aim to determine if the corresponding protein(s) are secreted or actually retained in intracellular locations or membrane-attached.

  • Remaining genes, with no transcript predicted to encode a secreted protein, will be assigned the prediction-based location(s).

The annotated location overrules the predicted location, so that a gene encoding a predicted secreted protein that has been annotated as intracellular will have intracellular as the final location.

Intracellular
Protein evidence Evidence at protein level (all genes)

HUMAN PROTEIN ATLAS INFORMATIONi

Summary of RNA expression analysis and annotation data generated within the Human Protein Atlas project.

Single cell type
expression clusteri

The RNA data was used to cluster genes according to their expression across single cell types. Clusters contain genes that have similar expression patterns, and each cluster has been manually annotated to describe common features in terms of function and specificity.

Cytotrophoblasts - Mitochondria (mainly)
Single cell type specificityi

The RNA specificity category is based on mRNA expression levels in the analyzed cell types based on scRNA-seq data from normal tissues. The categories include: cell type enriched, group enriched, cell type enhanced, low cell type specificity and not detected.

Cell type enhanced (Basal squamous epithelial cells, Cytotrophoblasts, Sertoli cells, Squamous epithelial cells, Suprabasal keratinocytes)
Tissue expression
cluster (RNA)i

The RNA data was used to cluster genes according to their expression across tissues. Clusters contain genes that have similar expression patterns, and each cluster has been manually annotated to describe common features in terms of function and specificity.

Non-specific - Endocytosis (mainly)
Tissue specificity (RNA)i

The RNA specificity category is based on mRNA expression levels in the consensus dataset which is calculated from the RNA expression levels in samples from HPA and GTEX. The categories include: tissue enriched, group enriched, tissue enhanced, low tissue specificity and not detected.

Tissue enhanced (Brain, Skin)
Subcellular locationi

Main subcellular location based on data generated in the subcellular section of the Human Protein Atlas.

Localized to the Nucleoplasm, Nucleoli fibrillar center In addition localized to the Cell Junctions
Secretome annotationi

All genes with at least one predicted secreted isoform have been annotated and classified with the aim to determine if the corresponding protein(s) are:

  • secreted into blood
  • locally secreted
  • or actually being attached to membrane or retained in intracellular locations like mitochondria, endoplasmatic reticulum (ER), Golgi apparatus or lysosomes.

Not available
GENE INFORMATIONi

Gene information from Ensembl and Entrez, as well as links to available gene identifiers are displayed here. Information was retrieved from Ensembl if not indicated otherwise.

Chromosome 15
Cytoband q15.1
Chromosome location (bp) 40217428 - 40277487
Number of transcriptsi

Number of protein-coding transcripts from the gene as defined by Ensembl.

17
Ensembl ENSG00000137843 (version 109)
Entrez gene 56924
HGNC HGNC:16061
UniProt Q9NQU5 (UniProt - Evidence at protein level)
neXtProt NX_Q9NQU5
GeneCards PAK6
ASSAYSi

Links to data of the different assays available in the Structure & Interaction resource of the Human Protein Atlas. Click on the miniature images to directly get to the respective section.

Proteinstructure Interaction
PROTEIN BROWSERi

The Structure section provides in-house generated structures, predicted using the Alphafold source code, for the majority of the proteins and their related isoforms.

Displaying protein features on the AlphaFold structures

Individual splice variants can be selected in the top part of the Protein Browser (see below) and different transcript-related features such as transmembrane regions, InterPro domains and antigen sequences for antibodies can be displayed in the structure by clicking on the respective features in the Protein Browser.

Clinical and population-based amino acid variants based on data from the Ensembl variation database and AlphaMissense (AM) predictions can be highlighted using the sliders to the right of the structure. These can also be used to colour the entire structure by residue index or make the structure autorotate.The structures are displayed using the NGL Viewer and can also be zoomed-in and rotated manually.

The Protein Browser

The ProteinBrowser displays the antigen location on the target protein(s) and the features of the target protein. Transcript names and schematic transcript structures including exons, introns and UTRs for the different isoforms are shown on top, and can be used to switch between the structures for the different splice variants.

At the top of the view, the position of the antigen (identified by the corresponding HPA identifier) is shown as a green bar. A yellow triangle on the bar indicates a <100% sequence identity to the protein target.

Below the antigens, the maximum percent sequence identity of the protein to all other proteins from other human genes is displayed, using a sliding window of 10 aa residues (HsID 10) or 50 aa residues (HsID 50). The region with the lowest possible identity is always selected for antigen design, with a maximum identity of 60% allowed for designing a single-target antigen (read more).

The curve in blue displays the predicted antigenicity i.e. the tendency for different regions of the protein to generate an immune response, with peak regions being predicted to be more antigenic.The curve shows average values based on a sliding window approach using an in-house propensity scale. (read more).

Signal peptides (turquoise) and membrane regions (orange) based on predictions using the majority decision methods MDM and MDSEC are also displayed.

Low complexity regions are shown in yellow and InterPro regions in green. Common (purple) and unique (grey) regions between different splice variants of the gene are also displayed (read more), and at the bottom of the protein view is the protein scale.
«
PAK6-201
PAK6-202
PAK6-203
PAK6-204
PAK6-205
PAK6-208
PAK6-209
PAK6-210
PAK6-211
PAK6-212
PAK6-213
PAK6-214
PAK6-216
PAK6-217
PAK6-218
PAK6-219
PAK6-220
»

Description:

Color scheme:
Confidence
Residue index
Your selection
Variants:
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Population
Clinical
Alphamissense variants:
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Benign
Pathogenic
Autorotate:
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On
PROTEIN INFORMATIONi

The protein information section displays alternative protein-coding transcripts (splice variants) encoded by this gene according to the Ensembl database.

The Splice variant identifier links to the Ensembl website protein summary for the selected splice variant. The data in the Swissprot and TrEMBL columns links to corresponding pages in the UniProt database.

The protein classes assigned to this protein are shown if expanding the data in the protein class column. Parent protein classes are in bold font and subclasses are listed under the parent class.

The length of the protein (amino acid residues according to Ensembl), molecular mass (kDalton), predicted signal peptide and number of predicted transmembrane region(s) according to in-house majority decision methods based on sets of predictors are also reported.
Splice variant SwissProt TrEMBL Protein class Length & mass Signal peptide
(predicted)
Transmembrane regions
(predicted)
PAK6-201
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Kim et al 2014)
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-202
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Kim et al 2014)
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-203
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Kim et al 2014)
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-204
Q9NQU5
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Ezkurdia et al 2014)
Show all
636 aa
69.8 kDa
No 0
PAK6-205
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-208
H0YLZ9
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
122 aa
13.9 kDa
No 0
PAK6-209
H0YMS4
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
123 aa
14 kDa
No 0
PAK6-210
H0YK38
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
68 aa
8.1 kDa
No 0
PAK6-211
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-212
H0YKB6
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
51 aa
6.1 kDa
No 0
PAK6-213
H0YK74
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
109 aa
12.5 kDa
No 0
PAK6-214
H0YK91
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
112 aa
12.8 kDa
No 0
PAK6-216
Q9NQU5
Show all
A0A024R9Q4
Show all
Enzymes
Predicted intracellular proteins
Plasma proteins
RAS pathway related proteins
Mapped to neXtProt
Protein evidence (Ezkurdia et al 2014)
Show all
681 aa
74.9 kDa
No 0
PAK6-217
H0YL16
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
284 aa
30.7 kDa
No 0
PAK6-218
H0YL47
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
65 aa
7.7 kDa
No 0
PAK6-219
H0YL02
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
14 aa
1.7 kDa
No 0
PAK6-220
H0YM99
Show all
Predicted intracellular proteins
RAS pathway related proteins
Protein evidence (Ezkurdia et al 2014)
Show all
104 aa
11.9 kDa
No 0
Show allShow less
INTERACTIONi

In the Interaction part of this page network plots showing the gene's interaction partners according to four different datasets are displayed, including a consensus network plot showing only interactions present in at least two of the datasets. In the network plots the nodes represent genes and edge color represent the number of datasets the interaction belongs to.

The highlight bar in the top of the plot can be used to color the nodes according to subcellular location (based on data in the Subcellular section), predicted location (based on signalpeptide and transmembrane region predictions), tissue specificity (based on RNA tissue expression profiles) or proteinclass. For genes categorised as single cell type or group specific the option to highlight interaction partners expressed in the same cell type will also be available in the highlight bar.

Custom highlighting of nodes is possible using the top left Filter option in which a query of choice can be built to for example label all nodes that are tissue enriched in both human and mouse brain or those that belongs to a certain tissue expression cluster. The expression cluster for the gene is stated in the box Human Protein Atlas Information above the network plot. Click on Filter in the top left in the plot to find the query builder and some example queries.

Interactions included are direct interaction and physical associations with high and medium confidence from IntAct, physical multivalidated interactions from BioGRID, interactions with>75% probability from BioPlex and significant physical interactions from OpenCell.

Filter menu »
Fields »
e.g. Brain enriched, Localized to mitochondria, Non-specific - Endocytosis

Field
Term
Gene name
Class
Subclass
Class
Keyword
Chromosome
External id
Tissue
Cell type
Expression
Antibody panel
Tissue
Main location
Patient ID
Annotation
Tissue
Category
Tau score
Cluster
Reliability
Brain region
Category
Tau score
Brain region
Category
Tau score
Brain region
Category
Tau score
Cluster
Reliability
Tissue
Cell type
Enrichment
Cell type
Category
Tau score
Cell type
Category
Tau score
Cell type
Category
Tau score
Cell lineage
Category
Tau score
Cluster
Cluster
Location
Searches
Location
Cell line
Class
Type
Phase
Reliability
Cancer
Prognosis
Cancer
Category
Cancer
Category
Tau score
Cluster
Variants
Interacting gene (ensg_id)
Type
Number of interactions
Pathway
Category
Score
Score
Score
Validation
Validation
Validation
Validation
Antibodies
Data type
Column


Consensus
IntAct
BioGrid
OpenCell
BioPlex
Highlight:
Off
Subcell location
Predicted location
Cell type specificity
Protein class



Number of interactions: 4
Interaction# Consensus# IntAct# BioGrid# OpenCell# BioPlex
CDC423033157151
LRRK2361086800
YWHAE23512438032412
YWHAQ8858310796
Highlight:
Off
Subcell location
Predicted location
Cell type specificity
Protein class



Number of interactions: 7 View all protein interaction data in IntAct
Interaction# Consensus# IntAct# BioGrid# OpenCell# BioPlex
CDC423033157151
HSF2BP3224500
LRRK2361086800
RHOJ516800
RHOV02100
YWHAE23512438032412
YWHAQ8858310796
Highlight:
Off
Subcell location
Predicted location
Cell type specificity
Protein class



Number of interactions: 10
Interaction# Consensus# IntAct# BioGrid# OpenCell# BioPlex
AR344225300
CDC423033157151
LRRK2361086800
MDM2476125900
PAK4892990
RAC13260109150
YWHAE23512438032412
YWHAG25226342722213
YWHAQ8858310796
YWHAZ2201643373248
PAK6 has no defined protein interactions in OpenCell.
Highlight:
Off
Subcell location
Predicted location
Cell type specificity
Protein class



Number of interactions: 1
Interaction# Consensus# IntAct# BioGrid# OpenCell# BioPlex
MAK16119048
METABOLIC SUMMARYi

In this summary the pathway/subsystems to which the gene belongs is shown together with the associated cellular compartment for the reactions based on metabolite information. The number of proteins and metabolites in the pathway is shown as well as the number of reactions for the selected gene. By clicking on a pathway in the summary table the associated metabolic network map is shown, together with a gene-tissue heatmap that shows the expression of genes in that pathway in different tissues.

PAK6 is not a metabolic protein

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