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粘着斑解体是肝星状细胞趋化性中的一个重要早期事件。

Focal adhesion disassembly is an essential early event in hepatic stellate cell chemotaxis.

作者信息

Melton Andrew C, Soon Russell K, Park J Genevieve, Martinez Luis, Dehart Gregory W, Yee Hal F

机构信息

Department of Medicine and Liver Center, University of California San Francisco, San Francisco, California, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2007 Dec;293(6):G1272-80. doi: 10.1152/ajpgi.00134.2007. Epub 2007 Oct 18.

Abstract

Chemotaxis (i.e., directed migration) of hepatic stellate cells to areas of inflammation is a requisite event in the liver's response to injury. Previous studies of signaling pathways that regulate stellate cell migration suggest a key role for focal adhesions, but the exact function of these protein complexes in motility remains unclear. Focal adhesions attach a cell to its substrate and therefore must be regulated in a highly coordinated manner during migration. To test the hypothesis that focal adhesion turnover is an essential early event for chemotaxis in stellate cells, we employed a live-cell imaging technique in which chemotaxis was induced by locally stimulating the tips of rat stellate cell protrusions with platelet-derived growth factor-BB (PDGF). Focal adhesions were visualized with an antibody directed against vinculin, a structural component of the focal adhesion complex. PDGF triggered rapid disassembly of adhesions within 6.25 min, subsequent reassembly by 12.5 min, and continued adhesion assembly in concert with the spreading protrusion until the completion of chemotaxis. Blockade of adhesion disassembly by growing cells on fibronectin or treatment with nocodazole prevented a chemotactic response to PDGF. Augmentation of adhesion disassembly with ML-7 enhanced the chemotactic response to PDGF. These data suggest that focal adhesion disassembly is an essential early event in stellate cell chemotaxis in response to PDGF.

摘要

肝星状细胞向炎症区域的趋化作用(即定向迁移)是肝脏对损伤反应中的一个必要事件。先前对调节星状细胞迁移的信号通路的研究表明,粘着斑起关键作用,但这些蛋白质复合物在运动中的具体功能仍不清楚。粘着斑将细胞附着于其底物,因此在迁移过程中必须以高度协调的方式进行调节。为了验证粘着斑周转是星状细胞趋化作用必不可少的早期事件这一假设,我们采用了一种活细胞成像技术,其中通过用血小板衍生生长因子 -BB(PDGF)局部刺激大鼠星状细胞突起的尖端来诱导趋化作用。用针对粘着斑复合物结构成分纽蛋白的抗体使粘着斑可视化。PDGF在6.25分钟内触发粘着斑快速解体,随后在12.5分钟时重新组装,并随着伸展的突起持续进行粘着斑组装,直至趋化作用完成。通过在纤连蛋白上培养细胞或用诺考达唑处理来阻断粘着斑解体,可防止对PDGF的趋化反应。用ML -7增强粘着斑解体可增强对PDGF的趋化反应。这些数据表明,粘着斑解体是星状细胞对PDGF趋化作用中必不可少的早期事件。

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