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在衰老过程中,层粘连蛋白β2 向层粘连蛋白β1 异构体的转换控制着内皮细胞的功能——简短报告。

Switch in Laminin β2 to Laminin β1 Isoforms During Aging Controls Endothelial Cell Functions-Brief Report.

机构信息

From the Institute for Cardiovascular Regeneration (J.U.G.W., E.-M.R., M.M.-R., S.F.G., D.J., F.B., R.A.B., S.D.).

German Center of Cardiovascular Research (DZHK), Frankfurt am Main (J.U.G.W., S.F.G., A.M.Z., R.A.B., S.D.).

出版信息

Arterioscler Thromb Vasc Biol. 2018 May;38(5):1170-1177. doi: 10.1161/ATVBAHA.117.310685. Epub 2018 Mar 29.

Abstract

OBJECTIVE

Endothelial cells play important roles in tissue homeostasis and vascularization, a function that is impaired by aging. Here, we aim to decipher the role of the microenvironment underlying the impairment of endothelial cell functions by aging.

APPROACH AND RESULTS

RNA sequencing of isolated cardiac endothelial cells derived from young and 18-month-old mouse hearts revealed that aging affects the endothelial expression of genes encoding extracellular matrix proteins, specifically the laminin β1 () and laminin β2 () chains. Whereas was upregulated, was decreased in endothelial cells in old mice compared with young controls. A similar change in expression patterns was observed after induction of acute myocardial infarction. Mimicking aging and injury conditions by plating endothelial cells on laminin β1-containing laminin 411 matrix impaired endothelial cell adhesion, migration, and tube formation and augmented endothelial-to-mesenchymal transition and endothelial detachment compared with laminin 421, which contains the laminin β2 chain. Because laminins can signal via integrin receptors, we determined the activation of ITGB1 (integrin β1). Laminin 421 coating induced a higher activation of ITGB1 compared with laminin 411. siRNA-mediated silencing of ITGB1 reduced laminin β2-dependent adhesion, suggesting that laminin β2 more efficiently activates ITGB1.

CONCLUSIONS

Mimicking age-related modulation of laminin β1 versus β2 chain expression changes the functional properties and phenotype of endothelial cells. The dysregulation of the extracellular matrix during vascular aging may contribute to age-associated impairment of organ function and fibrosis.

摘要

目的

内皮细胞在组织稳态和血管生成中发挥重要作用,其功能随着衰老而受损。本研究旨在阐明衰老导致内皮细胞功能障碍的微环境的作用。

方法和结果

对来自年轻和 18 个月大的小鼠心脏的分离的内皮细胞进行 RNA 测序,结果表明衰老影响了编码细胞外基质蛋白的基因在内皮细胞中的表达,特别是层粘连蛋白β1()和层粘连蛋白β2()链。与年轻对照组相比,老年小鼠内皮细胞中上调,而下调。在急性心肌梗死诱导后,观察到类似的表达模式变化。将内皮细胞种植在含有层粘连蛋白β1的层粘连蛋白 411 基质上,模拟衰老和损伤条件,与含有层粘连蛋白β2链的层粘连蛋白 421 相比,内皮细胞黏附、迁移和管状结构形成受损,内皮细胞向间充质转化和内皮细胞脱落增加。由于层粘连蛋白可以通过整合素受体信号转导,我们确定了 ITGB1(整合素β1)的激活情况。与层粘连蛋白 411 相比,层粘连蛋白 421 涂层诱导更高的 ITGB1 激活。siRNA 介导的 ITGB1 沉默减少了层粘连蛋白β2依赖性黏附,表明层粘连蛋白β2更有效地激活 ITGB1。

结论

模拟与年龄相关的层粘连蛋白β1与β2 链表达变化改变了内皮细胞的功能特性和表型。血管老化过程中细胞外基质的失调可能导致与年龄相关的器官功能障碍和纤维化。

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