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Disruption of basal JNK activity differentially affects key fibroblast functions important for wound healing
Delphine Javelaud1, Julien Laboureau, Eric Gabison
1INSERM U532, Institut de Recherche sur la Peau, Université Paris VII, Hôpital Saint-Louis, Pavillon Bazin, France.
Abstract:
We used both a gene knockout approach and pharmacologic modulation to study the implication of the JNK pathway in regulating fibroblast motility, capacity to contract mechanically unloaded collagen gels, and type I collagen gene expression in vitro. These parameters, which are important for tissue repair, are positively regulated by transforming growth factor (TGF)-beta, a cytokine viewed as playing a master role during wound healing. We demonstrate that basal JNK activity is critical for fibroblast motility because (a) mouse embryo jnk-/- fibroblasts exhibit significantly lower ability to close mechanically induced cell layer wounds than their wild-type (wt) counterparts, and (b) wound closure by human dermal fibroblasts is dramatically impaired by the specific JNK inhibitor SP600125. junAA fibroblasts, in which amino acids Ser63 and Ser73 of c-Jun are replaced by two Ala residues so that c-Jun cannot be phosphorylated by JNK, also exhibited impaired motility, suggesting that c-Jun phosphorylation by JNK is critical for fibroblast migration. In sharp contrast to their lesser motility on plastic, jnk-/- and junAA fibroblasts contracted free-floating, mechanically unloaded, collagen lattices markedly faster than wt fibroblasts. Furthermore, basal mRNA steady-state levels for types I and III collagen genes were similar in jnk-/- and wt fibroblasts. Likewise, overexpression of a dominant-negative mutant form of MKK4 in dermal fibroblasts did not affect collagen expression. We also demonstrate that basal JNK activity does not affect either TGF-beta-induced collagen gene expression or lattice contraction, whereas on the other hand, the blockage of motility initiated by JNK inhibition cannot be overcome by TGF-beta. Together these results demonstrate discrete, yet significant and highly specific, regulation of fibroblast functions important for wound healing by basal JNK activity.
Insights
Basal JNK pathway activity is crucial for fibroblast motility during wound healing, but does not impact collagen production or contraction. Transforming growth factor-beta cannot overcome JNK inhibition of cell migration.
Area of Science:
- Cell Biology
- Molecular Biology
- Wound Healing Research
Background:
- Fibroblast functions like motility and collagen production are vital for tissue repair and wound healing.
- Transforming growth factor-beta (TGF-β) is a key regulator of wound healing processes.
- The role of the c-Jun N-terminal kinase (JNK) pathway in fibroblast behavior requires further elucidation.
Purpose of the Study:
- To investigate the specific role of the JNK pathway in regulating fibroblast motility, collagen gel contraction, and type I collagen gene expression.
- To determine the interplay between JNK signaling and TGF-β in the context of wound healing functions.
Main Methods:
- Gene knockout (jnk-/- and junAA fibroblasts) and pharmacologic inhibition (SP600125) of the JNK pathway.
- Assessment of fibroblast motility using wound closure assays on plastic and collagen gel contraction assays.
- Analysis of type I and III collagen gene expression via mRNA steady-state levels.
Main Results:
- Basal JNK activity is essential for fibroblast motility, as evidenced by impaired wound closure in jnk-/- and junAA fibroblasts and following SP600125 treatment.
- Fibroblast-mediated collagen gel contraction was significantly enhanced in jnk-/- and junAA fibroblasts compared to wild-type.
- JNK activity did not influence basal or TGF-β-induced collagen gene expression or TGF-β-enhanced lattice contraction.
- TGF-β could not rescue the impaired motility caused by JNK inhibition.
Conclusions:
- Basal JNK activity differentially regulates fibroblast functions, being critical for migration but not for collagen production or gel contraction.
- JNK signaling and TGF-β exert distinct, non-overlapping effects on fibroblast behavior during wound healing.
- Targeting JNK may offer specific therapeutic strategies for modulating fibroblast motility in wound repair.