ArticleMolecular and cellular biochemistry2026
Laminin-triggered integrin signaling potentiates γ-enolase-induced neurite outgrowth.
Article in Molecular and cellular biochemistry, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Neurite growth is regulated by trophic support and the extracellular matrix (ECM). γ-Enolase, a neuron-specific enolase isoform, promotes neurite outgrowth through neurotrophic-like activity, but the contribution of ECM engagement and integrin signaling remains unclear. Here, we examined the role of laminin, collagen, and poly-L-lysine in γ-enolase peptide-induced neuritogenesis in neuroblastoma SH-SY5Y and pheochromocytoma PC12 cells. Treatment with a synthetic C-terminal γ-enolase peptide (γ-Eno) rapidly induced neurite outgrowth and actin remodeling, with laminin providing the strongest enhancement, particularly in SH-SY5Y cells. γ-Eno increased surface expression of β1 integrin and, to a lesser extent, α1 integrin, alongside a stronger neurite response on laminin. In laminin-coated cells, actin remodeling was evident within 3 h, followed by increased neurite formation at 24 h and significant neurite elongation at 48 h. Mechanistically, γ-Eno induced focal adhesion kinase (FAK) phosphorylation, which was significantly increased in both cell types on laminin and collagen. Extracellular signal-regulated kinases 1 and 2 (ERK1/2) activation was cell type- and ECM-dependent, whereas Akt phosphorylation increased significantly in SH-SY5Y cells but did not change markedly in PC12 cells. Integrin blockade with GRGDS attenuated γ-Eno-induced neurite outgrowth, MAP2 expression, and FAK phosphorylation. GRGDS also reduced Akt phosphorylation in SH-SY5Y cells and attenuated ERK1/2 phosphorylation in PC12 cells, supporting cell type-specific downstream signaling. These findings show that laminin-mediated integrin signaling enhances γ-enolase-induced neurite outgrowth and is associated with integrin-dependent FAK activation, with ERK1/2 and Akt contributing in a context-dependent manner.
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