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Syndecan-1诱导的细胞外基质纤维排列需要整合素αvβ3以及Syndecan-1胞外结构域和硫酸乙酰肝素链。

Syndecan-1-Induced ECM Fiber Alignment Requires Integrin αvβ3 and Syndecan-1 Ectodomain and Heparan Sulfate Chains.

作者信息

Yang Ning, Friedl Andreas

机构信息

Department of Pathology and Laboratory Medicine, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.

Pathology and Laboratory Medicine Service, William S. Middleton Memorial Veterans Hospital, Department of Veterans Affairs Medical Center, Madison, Wisconsin, United States of America.

出版信息

PLoS One. 2016 Feb 24;11(2):e0150132. doi: 10.1371/journal.pone.0150132. eCollection 2016.

Abstract

Expression of the cell surface proteoglycan syndecan-1 (Sdc1) is frequently induced in stromal fibroblasts of invasive breast carcinomas. We have recently identified a correlation between stromal Sdc1 expression and extracellular matrix (ECM) fiber alignment, both in vitro and in vivo. ECMs derived from Sdc1-positive human mammary fibroblasts (HMF) showed an aligned fiber architecture, which contrasted markedly with the more random fiber arrangement in the ECM produced by Sdc1-negative HMFs. We further demonstrated that aligned fiber architecture promotes the directional migration and invasion of breast carcinoma cells. To decipher the molecular mechanisms governing the formation of an aligned, invasion-permissive ECM, a series of Sdc1 mutants was introduced into HMF. We found that both the ectodomain and heparan sulfate chains of Sdc1 were required for full activity of Sdc1 in regulating ECM alignment, while transmembrane and cytoplasmic domains were dispensable. Sdc1 regulates the activities of several integrins via its ectodomain. Integrins are key players in the assembly of fibronectin-rich ECM. In addition, integrins are capable of regulating cell morphology and cell shape and orientation may affect ECM architecture. Therefore, we investigated the role of integrins in Sdc1-mediated ECM fiber alignment. Sdc1-overexpressing HMF gained an enhanced spindle-shaped morphology when cultured in an overconfluent state under conditions permissive for ECM production, which was partially reversed by siRNA-mediated silencing of β3 integrin expression. Moreover, suppression of αvβ3 integrin activity by a function-blocking antibody or β3 knockdown largely abolished the aligned ECM fiber architecture and consequently the invasion-permissive properties of the ECM induced by Sdc1. The results suggest that Sdc1 may modulate fibronectin fibrillogenesis and/or alter cell morphology during ECM production through αvβ3 integrin, thereby mediating ECM fiber alignment. Understanding the mechanisms governing ECM organization may lead to the development of novel stroma-targeted therapy for breast cancer, aiming at converting an invasion-permissive to an invasion-restrictive microenvironment.

摘要

细胞表面蛋白聚糖syndecan-1(Sdc1)的表达在浸润性乳腺癌的基质成纤维细胞中经常被诱导。我们最近在体外和体内均发现基质Sdc1表达与细胞外基质(ECM)纤维排列之间存在相关性。源自Sdc1阳性人乳腺成纤维细胞(HMF)的ECM呈现出排列的纤维结构,这与Sdc1阴性HMF产生的ECM中更为随机的纤维排列形成了显著对比。我们进一步证明,排列的纤维结构促进乳腺癌细胞的定向迁移和侵袭。为了解析控制排列的、允许侵袭的ECM形成的分子机制,一系列Sdc1突变体被引入HMF。我们发现,Sdc1的胞外域和硫酸乙酰肝素链对于Sdc1调节ECM排列的全部活性是必需的,而跨膜域和胞质域则是可有可无的。Sdc1通过其胞外域调节几种整合素的活性。整合素是富含纤连蛋白的ECM组装中的关键参与者。此外,整合素能够调节细胞形态,而细胞形状和取向可能影响ECM结构。因此,我们研究了整合素在Sdc1介导的ECM纤维排列中的作用。当在允许ECM产生的条件下以过度汇合状态培养时,过表达Sdc1的HMF获得了增强的纺锤形形态,而β3整合素表达的siRNA介导的沉默部分逆转了这种形态。此外,功能阻断抗体抑制αvβ3整合素活性或敲低β3在很大程度上消除了排列的ECM纤维结构,从而消除了Sdc1诱导的ECM的允许侵袭特性。结果表明,Sdc1可能通过αvβ3整合素在ECM产生过程中调节纤连蛋白原纤维形成和/或改变细胞形态,从而介导ECM纤维排列。了解控制ECM组织的机制可能会导致开发针对乳腺癌的新型基质靶向疗法,旨在将允许侵袭的微环境转变为限制侵袭的微环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/610b/4766302/c4b0a4eb71d0/pone.0150132.g001.jpg

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