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Yutaka Momota

Publications and source records attributed to Yutaka Momota.

5 recordsLinked to original sources

Laminin alpha3 LG4 module induces keratinocyte migration: involvement of matrix metalloproteinase-9.

Laminin alpha3 chain, a functionally key subunit of laminin-5, contains a large globular module (G module) which consists of a tandem repeat of five homologous LG modules (LG1-5). We previously demonstrated that the LG4 module of laminin alpha3 chain (alpha3 LG4) induces a matrix metalloproteinase-1 (MMP-1) expression through the interaction with syndecans leading to MAPK activation/IL-1beta expression signaling loop (Utani et al., J. Biol. Chem. 278, 34483-34490, 2003). Here, we show that a recombinant alpha3 LG4 and synthetic peptides containing syndecan binding motif induced a cell motility and a MMP-9 expression in ketarinocytes. The synthetic peptide (A3G756)-induced cell migration and MMP-9 upregulation were inhibited by each application of a heparin and an IL-1 receptor antagonist (IL-1RA), suggesting the involvement of syndecans and IL-1beta autocrine. Furthermore, the A3G756-induced cell motility was inhibited by an MMP-9 inhibitor and a neutralizing antibody of MMP-9, indicating induced cell motility was dependent on an MMP-9 activity. Taken these together, laminin-5 alpha3 LG4 module may play an important role in re-epithelialization at tissue remodeling.

Amino Acid Sequence↗

Elastin gene expression in blepharochalasis.

Blepharochalasis is a rare condition characterized by recurrent episodes of eyelid edema lead to an atrophic eyelid skin with fine wrinkles and peculiar bronze discoloration. A 32-year-old female presented with loose and redundant skin of the bilateral eyelids. We diagnosed her disease as blepharochalasis by clinical features and by disappearance of elastic fibers from the dermis in the biopsied specimen. Because elastic fibers diminish in the late phase of blepharochalasis, we performed RT-PCR to analyze the mRNA expression of elastin, a major component of elastic fiber. Elastin mRNA expression in the patient's cultured fibroblasts had not decreased compared with that in the control fibroblasts. This result suggests that environmental factors or other matrix components of elastic fibers may be involved in the loss of elastic fiber.

Adult↗

Localization of the laminin alpha4 chain in the skin and identification of a heparin-dependent cell adhesion site within the laminin alpha4 chain C-terminal LG4 module.

The laminin alpha4 chain, a component of laminin-8/9, is expressed in basement membranes of endothelial cells, the peripheral nerves, and muscle fibers. The localization and functions of laminin alpha4 chain in the skin have not been elucidated. By immunostaining with specific antibodies, we demonstrate here that the alpha4 chain is located in the basement membrane zones of blood vessels and is also associated with fibroblast-like cells in the dermis. Western blot showed that cultured fibroblasts secreted a laminin trimer containing the alpha4 chain. We have also focused on the cell adhesion activities of the human laminin alpha4 LG4 module since the corresponding LG4 module of laminin alpha3 was previously identified as active for cell adhesion. Recombinant human alpha4 LG4 was active for heparin-dependent fibroblast adhesion. Screening assays with 19 synthetic peptides covering the entire alpha4 LG4 module identified three peptides (HA4G82: TLFLAHGRLVYM; HA4G83: LVYMFNVGHKKL; and HA4G90: TEATWKIKGPIYL) as active sites for heparin- and heparan sulfate-dependent cell adhesion. Serine-substituted peptides demonstrated that two basic residues, His and Arg, within HA4G82 were essential for cell adhesion activity. The cell surface heparan sulfate proteoglycans (HSPGs), syndecan-2, -4, and glypican-1, were stably expressed in 293T cells to estimate whether they function as cell adhesion receptors. 293T cells overexpressing syndecan-2 or -4 bound to recombinant alpha4 LG4 and to HA4G82, but parental or glypican-1-overexpressing 293T cells did not. Therefore, syndecan-2 and -4 could mediate cell adhesion to the laminin alpha4 LG4 module. Our study suggests that the laminin alpha4 LG4 module may play an important role in cell adhesion and/or vessel wall formation in the skin by interacting with syndecan-2 and/or -4.

Binding Sites↗

Laminin alpha 3 LG4 module induces matrix metalloproteinase-1 through mitogen-activated protein kinase signaling.

The LG4 module of the laminin alpha 3 chain (alpha 3 LG4), a component of epithelial-specific laminin-5, has cell attachment activity and binds syndecan (Utani, A., Nomizu, M., Matsuura, H., Kato, K., Kobayashi, T., Takeda, U., Aota, S., Nielsen, P. K., and Shinkai, H. (2001) J. Biol. Chem. 276, 28779-28788). Here, we show that recombinant alpha 3 LG4 and a 19-mer synthetic peptide (A3G756) within alpha 3 LG4 active for syndecan binding increased the expression of matrix metalloproteinase-1 (MMP-1) in keratinocytes and fibroblasts. This induction was inhibited by heparin and required de novo synthesis of proteins. In keratinocytes, A3G756 up-regulated interleukin (IL)-1 beta and MMP-1 expression and an IL-1 receptor antagonist thoroughly inhibited A3G756-mediated induction of MMP-1. A3G756 also activated p38 mitogen-activated protein kinase (p38 MAPK) and extracellular signal-related kinase (Erk). Studies with specific inhibitors of MAPKs showed that p38 MAPK activation was necessary for both IL-1 beta and MMP-1 induction, but Erk activation was required only for MMP-1 induction. In fibroblasts, IL-1 receptor antagonist did not block A3G756-mediated induction of MMP-1. These results indicated that induction of MMP-1 by alpha 3 LG4 is mediated through the IL-1 beta autocrine loop in keratinocytes but the mechanism of the induction in fibroblasts is different. Our study suggests that the laminin alpha 3 LG4 module may play an important role in tissue remodeling by inducing MMP-1 expression during wound healing.

Animals↗