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骨膜蛋白通过Rho/PI 3激酶促进整合素信号介导的房室间充质基质侵袭和重塑。

Periostin promotes atrioventricular mesenchyme matrix invasion and remodeling mediated by integrin signaling through Rho/PI 3-kinase.

作者信息

Butcher Jonathan T, Norris Russell A, Hoffman Stanley, Mjaatvedt Corey H, Markwald Roger R

机构信息

Cardiovascular Developmental Biology Center, Chair of Cell Biology and Anatomy, Medical University of South Carolina, Charleston, SC 29425, USA.

出版信息

Dev Biol. 2007 Feb 1;302(1):256-66. doi: 10.1016/j.ydbio.2006.09.048. Epub 2006 Oct 4.

Abstract

Recent evidence suggests that extracellular matrix components may play a signaling role in embryonic valve development. We have previously identified the spatiotemporal expression patterns of periostin in developing valves, but its function during this process is largely unknown. To evaluate the functional role periostin plays during valvulogenesis, two separate three-dimensional culture assay systems, which model chick atrioventricular cushion development, were employed. These assays demonstrated that cushion mesenchymal cells adhered and spread on purified periostin in a dose-responsive manner, similar to collagen I and fibronectin via alpha(v)beta(3) and beta(1) integrin pairs. Periostin overexpression resulted in enhanced mesenchyme invasion through 3D collagen gels and increased matrix compaction. This invasion was dependent on alpha(v)beta(3) more than beta(1) integrin signaling, and was mediated differentially by Rho kinase and PI 3-kinase. Both matrix invasion and compaction were associated with a colocalization of periostin and beta(1) integrin expression to migratory cell phenotype in both surface and deep cells. The Rho/PI 3-kinase pathway also differentially mediated matrix compaction. Both Rho and PI 3-kinase were involved in normal cushion mesenchyme matrix compaction, but only PI 3-kinase was required for the enhanced matrix compaction due to periostin. Taken together, these results highlight periostin as a mediator of matrix remodeling by cushion mesenchyme towards a mature valve structure.

摘要

最近的证据表明,细胞外基质成分可能在胚胎瓣膜发育中发挥信号传导作用。我们之前已经确定了骨膜蛋白在发育中的瓣膜中的时空表达模式,但其在此过程中的功能在很大程度上尚不清楚。为了评估骨膜蛋白在瓣膜发生过程中所起的功能作用,我们采用了两种独立的三维培养分析系统,它们模拟鸡的房室垫发育。这些分析表明,垫间充质细胞以剂量反应方式在纯化的骨膜蛋白上黏附并铺展,类似于通过α(v)β(3)和β(1)整合素对与I型胶原蛋白和纤连蛋白的作用。骨膜蛋白的过表达导致间充质通过三维胶原凝胶的侵袭增强以及基质压实增加。这种侵袭对α(v)β(3)的依赖性大于β(1)整合素信号传导,并且由Rho激酶和PI 3激酶以不同方式介导。基质侵袭和压实都与骨膜蛋白和β(1)整合素在表面和深层细胞中向迁移细胞表型的共定位有关。Rho/PI 3激酶途径也以不同方式介导基质压实。Rho和PI 3激酶都参与正常的垫间充质基质压实,但由于骨膜蛋白导致的增强的基质压实仅需要PI 3激酶。综上所述,这些结果突出了骨膜蛋白作为垫间充质向成熟瓣膜结构进行基质重塑的介质的作用。

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