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大鼠动脉平滑肌细胞表面小窝的表达取决于细胞的表型状态。

Expression of caveolae on the surface of rat arterial smooth muscle cells is dependent on the phenotypic state of the cells.

作者信息

Thyberg J, Roy J, Tran P K, Blomgren K, Dumitrescu A, Hedin U

机构信息

Department of Cell and Molecular Biology, Karolinska Institute, Stockholm, Sweden.

出版信息

Lab Invest. 1997 Jul;77(1):93-101.

PMID:9251682
Abstract

Both after vascular injury and when established in vitro, arterial smooth muscle cells pass through a characteristic change in phenotype. This process includes a prominent structural reorganization with partial loss of myofilaments and formation of a large endoplasmic reticulum and Golgi complex. As a result, the cells lose their contractility and become able instead to divide and to secrete extracellular matrix components. In the present study, the expression of plasma membrane caveolae in rat arterial smooth muscle cells was studied in primary culture and during the formation of neointimal thickenings after balloon injury. Electron microscopic analysis revealed that the number of caveolae (identified as flask-shaped invaginations of the plasma membrane) was reduced when the cells converted from a contractile to a synthetic phenotype (as defined morphologically) and then increased again when they readopted a more differentiated state. However, immunoblotting analysis did not show any changes in the cellular content of caveolin (a major protein component of caveolae) during the 1st week in culture. At the same time, immunocytochemical staining demonstrated a shift in the localization of caveolin from small spot-like structures dispersed over the cell surface to vesicular structures in the perinuclear cytoplasm. These findings indicate that the transition of smooth muscle cells from a contractile to a synthetic phenotype involves a marked decline in the number of plasma membrane caveolae. In parallel, caveolin is internalized and redistributed to Golgi-associated vesicles in the perinuclear cytoplasm. In context of the rapidly increasing awareness of the importance of caveolae both in signal transduction and intracellular cholesterol transport, it seems likely that the variations in the number of caveolae may be significant for the functional differences between smooth muscle cells in different phenotypes.

摘要

在血管损伤后以及体外培养时,动脉平滑肌细胞都会经历表型的特征性变化。这个过程包括明显的结构重组,肌丝部分丢失,内质网和高尔基体复合体大量形成。结果,细胞失去收缩能力,转而能够分裂并分泌细胞外基质成分。在本研究中,我们对原代培养的大鼠动脉平滑肌细胞以及球囊损伤后新生内膜增厚形成过程中质膜小窝的表达进行了研究。电子显微镜分析显示,当细胞从收缩型表型(从形态学定义)转变为合成型表型时,小窝(定义为质膜的烧瓶状内陷)数量减少,而当它们重新进入更分化状态时,小窝数量又再次增加。然而,免疫印迹分析并未显示在培养的第1周内窖蛋白(小窝的主要蛋白质成分)的细胞含量有任何变化。与此同时,免疫细胞化学染色显示窖蛋白的定位从分散在细胞表面的小斑点状结构转移到核周细胞质中的囊泡状结构。这些发现表明,平滑肌细胞从收缩型向合成型表型的转变涉及质膜小窝数量的显著下降。同时,窖蛋白被内化并重新分布到核周细胞质中与高尔基体相关的囊泡中。鉴于人们对小窝在信号转导和细胞内胆固醇运输中的重要性的认识迅速增加,小窝数量的变化可能对不同表型平滑肌细胞的功能差异具有重要意义。

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