Abstract

Lysophosphatidic acid (LPA), a potent bioactive lipid found in atherosclerotic lesions, markedly induces smooth muscle cell (SMC) migration, which is an important process in atherogenesis. Therefore, understanding the mechanism of LPA-induced SMC migration is important. Several microarray databases suggest that the matricellular protein Cyr61 is highly induced by LPA. We hypothesized that Cyr61 mediates LPA-induced cell migration. Our data show that LPA induced temporal and spatial expression of Cyr61, which promptly accumulated in the cellular Golgi apparatus and then translocated to the extracellular matrix. Cyr61 antibody blockade and siRNA inhibition both diminished LPA-induced SMC migration, indicating a novel regulatory role of Cyr61. SMCs derived from LPA receptor 1 (LPA1) knock-out mice lack the ability of Cyr61 induction and cell migration, supporting the concept that LPA1 is required for Cyr61 expression and migration. By contrast, PPARγ was not found to be involved in LPA-mediated effects. Furthermore, focal adhesion kinase (FAK), a nonreceptor tyrosine kinase important for regulating cell migration, was activated by LPA at a late time frame coinciding with Cyr61 accumulation. Interestingly, knockdown of Cyr61 blocked LPA-induced FAK activation, indicating that an LPA-Cyr61-FAK axis leads to SMC migration. Our results further demonstrate that plasma membrane integrins α6β1 and ανβ3 transduced the LPA-Cyr61 signal toward FAK activation and migration. Taken together, these data reveal that de novo Cyr61 in the extracellular matrix bridges LPA and integrin pathways, which in turn, activate FAK, leading to cell migration. The current study provides new insights into mechanisms underlying cell migration-related disorders, including atherosclerosis, restenosis, and cancers.

Highlights

  • The molecular mechanism of smooth muscle cell (SMC) migration, a crucial event in atherosclerosis, is not well understood

  • SMCs derived from Lysophosphatidic acid (LPA) receptor 1 (LPA1) knock-out mice lack the ability of Cyr61 induction and cell migration, supporting the concept that LPA1 is required for Cyr61 expression and migration

  • Focal Adhesion Kinase (FAK) Is a Downstream Component of Cyr61 in the LPA Signaling Pathway, and Cyr61 Mediates focal adhesion kinase (FAK) Activation in SMCs—To determine the molecular mechanism by which Cyr61 mediates LPA-induced cell migration, we examined 1) whether FAK activation is the late event of LPA signaling, 2) whether Cyr61 mediates FAK activation, and 3) whether inhibition of FAK activity and down-regulation of FAK expression affect LPA-induced SMC migration

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Summary

Introduction

The molecular mechanism of smooth muscle cell (SMC) migration, a crucial event in atherosclerosis, is not well understood. To determine possible extracellular matrix (ECM) protein involvement in LPA-induced cell migration, we used primary SMCs isolated from wild type C57BL/6J mice and examined the effect of LPA on Cyr61 To explore the possible role of extracellular molecule Cyr61 in LPA-induced cell migration, we first determined whether LPA affects the expression profile of Cyr61 in SMCs. Cultured mouse aortic SMCs were serum-starved for 48 h and treated with 5 ␮M LPA for various time periods.

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