Related Experiment Video
Updated: Aug 23, 2026

Evaluation of Keratinocyte Proliferation on Two- and Three-dimensional Type I Collagen Substrates
Published on: April 22, 2019
Alpha 3 beta 1 integrin promotes keratinocyte cell survival through activation of a MEK/ERK signaling pathway
Asha Manohar1, Swati Ghosh Shome, John Lamar
1Center for Cell Biology and Cancer Research, Albany Medical College, MC-165, 47 New Scotland Avenue, Albany, New York, NY 12208, USA.
Abstract:
Inadequate or inappropriate adhesion of epithelial cells to extracellular matrix leads to a form of apoptosis known as anoikis. During various tissue remodelling events, such as wound healing or carcinoma invasion, changes in the physical properties, and/or composition of the extracellular matrix, can lead to anoikis of epithelial cells that lack appropriate receptor-matrix interactions. Laminin-5 is the major ligand for keratinocyte adhesion in the epidermis, and it also promotes keratinocyte survival in vivo and in vitro. Integrins alpha 3 beta 1 and alpha 6 beta 4 are the major receptors for laminin-5; however, specific roles for these integrins in keratinocyte survival have not been determined. In the current study, we exploited keratinocyte cell lines derived from wild-type or alpha 3 integrin knockout mice to reveal a critical role for alpha 3 beta 1 in protecting keratinocytes from apoptosis upon serum withdrawal. We show that alpha 3 beta 1-mediated adhesion to laminin-5 extracellular matrix inhibits proteolytic activation of caspase-3 and TUNEL-staining, both hallmarks of apoptosis. We also show that alpha 3 beta1-mediated adhesion activates focal adhesion kinase (FAK) and extracellular signal-regulated kinase (ERK), and that inhibition of either FAK or ERK signaling leads to apoptosis of keratinocytes attached to laminin-5. alpha 6 beta 4-mediated adhesion to laminin-5 only partially protects cells from apoptosis in the absence of alpha 3 beta 1, and alpha 6 beta 4 is not necessary for cell survival in the presence of alpha 3 beta 1. These results suggest that alpha 3 beta 1 is necessary and sufficient for maximal keratinocyte survival on laminin-5. We propose a model to address the potential importance of alpha 3 beta 1-mediated survival for migrating keratinocytes at the leading edge of a cutaneous wound.
Insights
Integrin alpha 3 beta 1 is crucial for keratinocyte survival by preventing anoikis (apoptosis). This receptor mediates adhesion to laminin-5, inhibiting cell death pathways and activating survival signals like FAK and ERK.
Area of Science:
- Cell Biology
- Dermatology
- Molecular Biology
Background:
- Anoikis, a form of apoptosis, occurs when epithelial cells detach from the extracellular matrix.
- Laminin-5 is key for epidermal keratinocyte adhesion and survival.
- Integrins alpha 3 beta 1 and alpha 6 beta 4 are primary laminin-5 receptors, but their roles in keratinocyte survival are unclear.
Purpose of the Study:
- To determine the specific roles of integrins alpha 3 beta 1 and alpha 6 beta 4 in keratinocyte survival.
- To investigate the signaling pathways involved in integrin-mediated keratinocyte survival.
Main Methods:
- Utilized keratinocyte cell lines from wild-type and alpha 3 integrin knockout mice.
- Assessed apoptosis using caspase-3 activation and TUNEL staining.
- Analyzed the activation of focal adhesion kinase (FAK) and extracellular signal-regulated kinase (ERK) signaling pathways.
Main Results:
- Alpha 3 beta 1 integrin is critical for protecting keratinocytes from apoptosis induced by serum withdrawal.
- Adhesion mediated by alpha 3 beta 1 inhibits apoptosis and activates FAK and ERK signaling.
- Alpha 6 beta 4 provides only partial protection in the absence of alpha 3 beta 1.
Conclusions:
- Integrin alpha 3 beta 1 is necessary and sufficient for maximal keratinocyte survival on laminin-5.
- Alpha 3 beta 1 signaling is vital for keratinocyte survival during tissue remodeling, such as wound healing.
Related Concept Videos
Intracellular Signaling Affects Focal Adhesions
Some...
MAPK Signaling Cascades
Activation of Integrins
In "outside-in signaling," external factors in the extracellular space bind to exposed ligand binding sites on integrins. This causes the inactive protein to undergo a conformational change to become active. Integrins are often clustered on the cell membrane. Repetitive and regularly spaced ligand binding events provide an effective stimulus.
Renewal of Skin Epidermal Stem Cells
PI3K/mTOR/AKT Signaling Pathway
Anchoring Junctions

