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BRF2
HPA
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  • SUMMARY

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  • BRF2
SINGLE CELL SINGLE CELL TYPES TISSUE CELL TYPE SINGLE NUCLEI BRAIN IMMUNE CELLS EXPRESSION CLUSTER TISSUES Show tissue menu
ADIPOSE TISSUE ADRENAL GLAND BONE MARROW BRAIN BREAST BRONCHUS COLON ENDOMETRIUM ESOPHAGUS EYE
FALLOPIAN TUBE HEART MUSCLE KIDNEY LIVER LUNG LYMPH NODE OVARY PANCREAS PBMC PITUITARY GLAND
PLACENTA PROSTATE RECTUM SALIVARY GLAND SKELETAL MUSCLE SKIN SMALL INTESTINE SPLEEN STOMACH TESTIS
THYMUS THYROID GLAND TONGUE VASCULAR
Single cell type
Tabula sapiens
Tissue cell type
Cell type proteome
Cell type enrichment
Brain cells
Immune cells
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.

BRF2
Gene descriptioni

Full gene name according to HGNC.

BRF2 RNA polymerase III transcription initiation factor subunit
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
Number of transcriptsi

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

3
HUMAN PROTEIN ATLAS INFORMATIONi

Summary of RNA expression and protein localization based on 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.

Glandular & Luminal cells - Unknown function (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.

Low cell type specificity
Tau specificity scorei

Tau specificity score is a numerical indicator of the specificity of the gene expression across cells or tissues. The value ranges from 0 and 1, where 0 indicates identical expression across all cells/tissue types, while 1 indicates expression in a single cell/tissue type.

0.39
Brain cluster specificityi

The RNA specificity category is based on mRNA expression levels in the analyzed cell cluster types based on snRNA-seq data from brain samples. The categories include: cell type enriched, group enriched, cell type enhanced, low cell type specificity and not detected. "cell type" refer to one of the 34 cluster names used to summarize the 2.5 million cells included in the brain cell representation.

Low cell type specificity
Immune cell specificityi

The RNA specificity category is based on mRNA expression levels in the analyzed samples based on data from HPA. The categories include: cell type enriched, group enriched, cell type enhanced, low cell type specificity and not detected.

Low immune cell specificity
Protein evidencei

Evidence score for genes based on UniProt protein existence (UniProt evidence); neXtProt protein existence (neXtProt evidence);and a Human Protein Atlas antibody- or RNA based score (HPA evidence). The avaliable scores are evidence at protein level, evidence at transcript level, no evidence, or not avaliable.

Evidence at protein level
ASSAYSi

Overview of the different datasets included in the Single Cell resource.

Single cell type
Cell type enrichment
Single nuclei - Brain
Immune cells
Expression clustering
SINGLE CELL TYPESi

A summary of normalized single cell RNA (nTPM) from all single cell types. Color-coding is based on cell type groups, each consisting of cell types with functional features in common.

Single cell types
RNA single cell type specificity: Low cell type specificity
TISSUE CELL TYPEi

The tissue cell type section provides a cell type specificity prediction for all protein coding genes. More information on the data available can be found here and a description of the analysis here.

Core cell typesi

The core cell type table displays data for a panel of eight cell types that are found in many tissues.

Colored dots indicate that the selected gene has core cell type specificity in the indicated tissue. Grey dots indicate that cell type is present within that tissue, but the selected gene is not predicted to be enriched there.

Category
Alphabetical
Enrichment
Tissue specific cell typesi

This plot shows the enrichment score of the selected gene in all non-core cell types found within the profiled tissues, allowing comparisons between different cell types within different tissues.

An enlarged symbol indicates classification of the gene as cell type enriched in the corresponding cell type.

SINGLE NUCLEI BRAINi

A summary of normalized single nuclei RNA (nTPM) from the brain single nuclei. Color-coding is based on cell type groups (as defined in the single cell type data representing the whole body), in this case separated into the main cell categories of neuron, glial cells, endothelial cells, fibroblasts and muscle cell (vascular smooth muscle cells and pericytes).

The data is based on Siletti K et al. (2023) public data.

Single nuclei cluster types
RNA brain cluster specificity: Low cell type specificity
IMMUNE CELL TYPE EXPRESSION (RNA)i

Blood cell type expression overview shows RNA-seq data from three different sources: Internally generated Human Protein Atlas (HPA) data, as well as data generated by (Monaco et al) and (Schmiedel et al). Color-coding is based on blood cell type lineages, including B-cells, T-cells, NK-cells, monocytes, granulocytes and dendritic cells as well as total PBMC. To access sample data, click on tissue name or bar.

HPA dataseti

The resulting transcript expression values calculated as nTPM, resulting from the internal normalization pipeline for 18 immune cell types and total peripheral blood mononuclear cells (PBMC).

Lineage
Expression
Alphabetical
Immune cell type specificity: Low immune cell specificity
Monaco dataseti

The transcript expression values (nTPM) resulting from the internal normalization pipeline are visualized for 29 blood cell types and total peripheral blood mononuclear cells (PBMC) from Monaco et al.

Lineage
Expression
Alphabetical
Schmiedel dataseti

Transcript Per Million (TPM) values are visualized for 15 blood cell types from the Schmiedel et al. dataset.

Lineage
Expression
Alphabetical
EXPRESSION CLUSTERING & CORRELATIONi

The RNA data was used to cluster genes according to their expression across samples. The resulting clusters have been manually annotated to describe common features in terms of function and specificity. The annotation of the cluster is displayed together with a confidence score of the gene's assignment to the cluster. The confidence is calculated as the fraction of times the gene was assigned to this cluster in repeated calculations and is reported between 0 to 1, where 1 is the highest possible confidence. The clustering results are shown in a UMAP, where the cluster this gene was assigned to is highlighted as a colored area in which most of the cluster genes reside. A table shows the 15 most similar genes in terms of expression profile.

SINGLE CELL TYPE
BRF2 is part of cluster 37 Glandular & Luminal cells - Unknown function with confidencei

Confidence is the fraction of times a gene was assigned to the cluster in repeated clustering, and therefore reflects how strongly associated it is to the cluster. A confidence of 1 indicates that the gene was assigned to this cluster in all repeated clusterings.

1
334 genes in cluster
Go to interactive expression cluster page
15 nearest neighbours based on single cell RNA expression
Neighbouri

Gene name according to HGNC.

Descriptioni

Gene description according to HGNC.

Correlationi

Correlation between the selected gene and neighboring gene. Correlation is calculated as Spearman correlation in PCA space based on the RNA-seq expression data.

Clusteri

ID of the expression cluster of the neighboring gene.

SLC7A4 Solute carrier family 7 member 4 0.5945 37
TMEM101 Transmembrane protein 101 0.5890 37
FN3KRP Fructosamine 3 kinase related protein 0.5553 24
ATP6V1C2 ATPase H+ transporting V1 subunit C2 0.5519 24
LRRC41 Leucine rich repeat containing 41 0.5426 37
ZNF620 Zinc finger protein 620 0.5426 30
TMEM187 Transmembrane protein 187 0.5366 33
DLG5 Discs large MAGUK scaffold protein 5 0.5289 37
EN2 Engrailed homeobox 2 0.5265 37
ZNF408 Zinc finger protein 408 0.5215 37
SLC30A2 Solute carrier family 30 member 2 0.5187 37
DLX5 Distal-less homeobox 5 0.5177 37
ZNF114 Zinc finger protein 114 0.5167 37
LGR5 Leucine rich repeat containing G protein-coupled receptor 5 0.5120 37
MSX2 Msh homeobox 2 0.5085 24
IMMUNE CELLS
BRF2 is part of cluster 3 Non-specific - Nuclear processes with confidencei

Confidence is the fraction of times a gene was assigned to the cluster in repeated clustering, and therefore reflects how strongly associated it is to the cluster. A confidence of 1 indicates that the gene was assigned to this cluster in all repeated clusterings.

0.96
471 genes in cluster
Go to interactive expression cluster page
15 nearest neighbours based on single cell RNA expression
Neighbouri

Gene name according to HGNC.

Descriptioni

Gene description according to HGNC.

Correlationi

Correlation between the selected gene and neighboring gene. Correlation is calculated as Spearman correlation in PCA space based on the RNA-seq expression data.

Clusteri

ID of the expression cluster of the neighboring gene.

HBS1L HBS1 like translational GTPase 0.9524 3
RPL36AL Ribosomal protein L36a like 0.9524 3
SMIM11 Small integral membrane protein 11 0.9286 3
CEP41 Centrosomal protein 41 0.9286 3
MKS1 MKS transition zone complex subunit 1 0.9286 3
TGS1 Trimethylguanosine synthase 1 0.9048 22
TCEAL3 Transcription elongation factor A like 3 0.9048 3
ERG28 Ergosterol biosynthesis 28 homolog 0.9048 3
SCAMP3 Secretory carrier membrane protein 3 0.9048 3
TUBD1 Tubulin delta 1 0.9048 3
SSBP1 Single stranded DNA binding protein 1 0.9048 3
SBDS SBDS ribosome maturation factor 0.8810 3
FIP1L1 Factor interacting with PAPOLA and CPSF1 0.8810 3
KLHL3 Kelch like family member 3 0.8810 3
AK3 Adenylate kinase 3 0.8810 3
 

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