Target intelligence / Profile preview

Nuclear factor 1 C-type (NFIC) (NFIC)

Target
NFIC
Molecular classification
Transcription factor, DNA-binding protein
01

Overview

Nuclear factor 1 C-type (NFIC) is a member of the Nuclear Factor I (NFI) family of site-specific DNA-binding proteins that play critical roles in both DNA replication and gene expression regulation [UniProt P08651]. NFIC specifically binds to the palindromic sequence 5'-TTGGCNNNNNGCCAA-3' (CCAAT-box) found in various viral and cellular promoters, acting as either a transcriptional activator or repressor depending on the cellular context and interacting partners [NCBI Gene ID: 4782]. Biologically, NFIC is indispensable for odontogenesis, particularly in the formation of tooth roots and the differentiation of odontoblasts [PubMed: 25613714]. In the context of human disease, NFIC has been implicated in various cancers, including breast and gastric cancers, where it often modulates the epithelial-mesenchymal transition (EMT) and TGF-beta signaling pathways [PubMed: 31110244]. While NFIC is recognized as a potential therapeutic target due to its regulatory influence on cell proliferation and differentiation, there are currently no approved small-molecule drugs that directly target it, though experimental approaches using RNA interference are being explored in research settings [PubMed: 28415631]. Its role in maintaining tissue homeostasis and its involvement in multiple signaling pathways suggest that therapeutic modulation would require high specificity to avoid off-target effects [PubMed: 22431104].

Other names
NF-I/CCTFCCAAT-box-binding transcription factorTGGCA-binding proteinNuclear factor I/CNFI-C
02

Mechanism of action

Modulation of NFIC activity typically involves inhibiting its DNA-binding capacity or interfering with its recruitment of transcriptional co-activators or repressors to CCAAT-box motifs in target gene promoters.

03

Biological functions

Transcription regulationDNA replicationOdontogenesisCell differentiationCell proliferation
04

Disease associations

CancerDentinogenesis imperfectaFibrosis
05

Safety considerations

Potential for systemic toxicity due to pleiotropic regulatory rolesImpact on dental and bone homeostasisContext-dependent effects in different tissue types
06

Biomarkers

NFIC mRNA expression levelsNFIC protein nuclear localization

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