NFATC1 Gene: Structure, Function, and Clinical Significance

A comprehensive overview of the NFATC1 gene, its protein product, associated diseases, expression patterns, and mutations.

Gene Information Card

Symbol NFATC1
Full Name Nuclear factor of activated T cells 1
Gene Type protein coding
Chromosomal Location 18q23
NCBI Gene ID 4772 ncbi.nlm.nih.gov/gene/4772
Ensembl ID ENSG00000131196
UniProt ID O95644
OMIM ID 600489
HGNC ID 7775
Aliases NFAT2, NF-ATc, NFATc1, NFAT transcription complex

Description

The NFATC1 gene encodes a transcription factor belonging to the nuclear factor of activated T cells (NFAT) family. It plays a critical role in immune response, particularly in T cell activation, by translocating to the nucleus upon dephosphorylation by calcineurin. NFATC1 also regulates gene expression in various other cell types, including osteoclasts, cardiac myocytes, and endothelial cells. Its activity is essential for development and differentiation processes, and dysregulation is implicated in several diseases, including cancers and autoimmune disorders.

Disease Associations

Disease category Pathophysiological mechanism Genomic evidence
B-cell acute lymphoblastic leukemia (B-ALL) NFATC1 is constitutively active in B-ALL cells, promoting survival and proliferation through target gene upregulation. COSMIC; PMID: 28202488
Diffuse large B-cell lymphoma (DLBCL) NFATC1 overexpression and nuclear localization contribute to oncogenic signaling in DLBCL. COSMIC; PMID: 23263627
Rheumatoid arthritis NFATC1 is a master regulator of osteoclast differentiation, and its upregulation in synovial tissue promotes bone erosion. OMIM; PMID: 15143267
Cardiac valve defects NFATC1 is required for embryonic cardiac valve formation; mutations or altered expression lead to valve malformations. OMIM; PMID: 15601660
Severe combined immunodeficiency (SCID) (rare) Loss-of-function mutations in NFATC1 impair T cell activation and immune response. ClinVar; PMID: 27418646

Expression Profile

Tissue Expression
Tissue nTPM level
Lymph node 12.4 Medium
Spleen 11.8 Medium
Bone marrow 9.2 Low
Thymus 8.5 Low
Heart 6.1 Low
Lung 4.3 Low
Kidney 3.2 Low
Liver 1.5 Not detected
Cell Line Expression
Cell Line nTPM Notes
K-562 (leukemia) 15.3 High expression; NFATC1 is constitutively active in this cell line.
HeLa (cervical cancer) 8.7 Moderate expression; NFATC1 may contribute to proliferation.
MCF7 (breast cancer) 6.4 Low expression; role in estrogen signaling.
A549 (lung cancer) 5.2 Low expression; NFATC1 may be induced by inflammatory stimuli.
HepG2 (liver cancer) 2.1 Very low expression; not a major regulator in hepatocytes.
Data source:Human Protein Atlas(proteinatlas.org)

Mutations & Variants

Hotspot Mutations
Variant Type Frequency Functional Description
c.1003C>T (p.Arg335Ter) Nonsense Rare (0.01%) Truncated protein lacking DNA-binding domain; loss of function.
c.1246G>A (p.Gly416Ser) Missense 0.05% (COSMIC) Altered DNA-binding affinity; potential gain-of-function in cancer.
c.1570C>T (p.Pro524Ser) Missense 0.02% (ClinVar) Unknown significance; may affect nuclear localization.
c.1780_1781insA (p.Thr594AsnfsTer12) Frameshift Rare Loss of function; associated with SCID.
Mutation functional classification

Loss of Function (LOF)

Mutations that truncate the protein or disrupt the DNA-binding domain lead to loss of transcriptional activity, impairing immune responses and causing immunodeficiency.

Gain of Function (GOF)

Missense mutations that enhance DNA-binding or nuclear localization can increase NFATC1 activity, promoting oncogenic gene expression in cancers.

Dominant Negative (DN)

Some mutations may produce a truncated protein that interferes with wild-type NFATC1 function, though evidence is limited.

Gene Ontology (GO)

• DNA-binding transcription factor activity • RNA polymerase II cis-regulatory region sequence-specific DNA binding
• protein binding • calcium-dependent protein binding
• nucleus • cytoplasm
• regulation of transcription by RNA polymerase II • calcineurin-mediated signaling
• T cell activation • osteoclast differentiation

Pathways

Calcineurin/NFAT signaling pathway
T cell receptor signaling pathway
Osteoclast differentiation pathway
Cardiac valve development pathway
IL-4 signaling pathway

Protein Summary

The NFATC1 protein is a 716-amino acid transcription factor with a conserved Rel homology domain (RHD) that mediates DNA binding and dimerization. It contains a regulatory domain with multiple serine residues that are phosphorylated in the cytoplasm. Upon calcium signaling, calcineurin dephosphorylates these residues, causing NFATC1 to translocate to the nucleus and activate target genes. NFATC1 can form homo- or heterodimers with other NFAT family members or with AP-1 (Fos/Jun) to regulate gene expression. It is essential for T cell anergy, osteoclast differentiation, and cardiac valve morphogenesis. Alternative splicing generates multiple isoforms with distinct functions.

Related Products

Product name Cat.No. Species Gene ID
NFATC1 Knockout HEK293 Cell Line EDJ-KQ208 Human 4772 Details Get a Quote
NFATC1 Knockout A-549 Cell Line EDJ-KQ19321 Human 4772 Details Get a Quote
NFATC1 Knockout HCT 116 Cell Line EDJ-KQ19323 Human 4772 Details Get a Quote
NFATC1 Knockout HeLa Cell Line EDJ-KQ19324 Human 4772 Details Get a Quote
NFATC1 Overexpression HEK293 Stable Cell Line EDC01720 Human 4772 Details Get a Quote
OPN4 and NFATC1 Overexpression HEK293 Stable Cell Line EDC90142 Human 94233 & 4772 Details Get a Quote
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