Target intelligence / Profile preview

Fermitin family member 2 (FERMT2)

Target
FERMT2
Molecular classification
Focal adhesion protein, Integrin activator, FERM domain-containing protein, Scaffolding protein
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Overview

Fermitin family member 2 (FERMT2), widely known as Kindlin-2, is a critical scaffolding protein that resides at focal adhesions and is essential for the regulation of integrin-mediated cell signaling. It functions primarily as an activator of integrins by binding to their cytoplasmic tails, a process that is vital for cell adhesion, spreading, and migration across various tissue types. Beyond its structural role, FERMT2 serves as a signaling hub that modulates key pathways such as Wnt/beta-catenin and TGF-beta, thereby influencing cell differentiation, gene expression, and tissue development. In clinical contexts, FERMT2 is recognized as a potent driver of cancer progression, where its overexpression is linked to epithelial-to-mesenchymal transition (EMT), increased metastatic potential, and poor patient prognosis in malignancies like breast, gastric, and colorectal cancers. Additionally, it has emerged as a significant genetic risk factor for Alzheimer's disease due to its role in regulating amyloid precursor protein (APP) metabolism and synaptic plasticity. While FERMT2 represents a high-value therapeutic target for inhibiting metastasis and neurodegeneration, its fundamental necessity for embryonic survival and cardiac function poses substantial challenges for the development of safe, systemically administered inhibitors.

Other names
Kindlin-2KIND2MIG2PLEKHC1UNC112BFermitin family homolog 2Mitogen-inducible gene 2 proteinPH domain-containing family C member 1
02

Mechanism of action

FERMT2 acts as an essential co-activator of integrins by binding directly to the distal NPxY motif of the beta-integrin cytoplasmic tail, which facilitates the conformational change to a high-affinity state (inside-out signaling) and stabilizes focal adhesions by linking integrins to the actin cytoskeleton.

03

Biological functions

Integrin activationCell adhesionCell migrationFocal adhesion assemblyWnt/beta-catenin signalingTGF-beta signalingAmyloid precursor protein (APP) metabolism regulationEpithelial-to-mesenchymal transition (EMT)Angiogenesis
04

Disease associations

CancerAlzheimer's diseaseFibrosisCardiovascular diseaseOsteoarthritisDiabetes
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Safety considerations

Peri-implantation lethalityProgressive heart failureImpaired insulin secretion and reduced beta-cell massSystemic toxicity due to essential role in tissue homeostasis and cell-matrix adhesion
06

Biomarkers

High FERMT2 expression in breast cancerHigh FERMT2 expression in gastric cancerHigh FERMT2 expression in melanomaAcute myeloid leukemia (AML) expression levels

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