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连接蛋白43的增加以及间隙连接通讯与过表达透明质酸介导的运动受体的细胞表型特征改变相关。

Increased connexin-43 and gap junctional communication correlate with altered phenotypic characteristics of cells overexpressing the receptor for hyaluronic acid-mediated motility.

作者信息

Nagy J I, Hossain M Z, Lynn B D, Curpen G E, Yang S, Turley E A

机构信息

Department of Physiology, University of Manitoba, Winnipeg, Canada.

出版信息

Cell Growth Differ. 1996 Jun;7(6):745-51.

PMID:8780888
Abstract

Gap junctional intercellular communication (GJIC) and connexin expression are often altered during cell migration, growth, and transformation, each of which is accompanied by cytoskeletal reorganization. Recently, transfection of fibroblast cells with various isoforms of the receptor for hyaluronic acid-mediated motility (RHAMM) was shown to have profound and differential effects on motility, growth, and cell contact behavior as well as on elements of the actin-containing cytoskeleton. These cells thus provide an ideal system in which to investigate parameters implicated in regulation of GJIC as well as expression of connexin-43 (Cx43) in fibroblasts. We used 10T1/2 fibroblast cell lines transfected with RHAMM isoforms or a dominant negative mutated form of RHAMM that blocks the function of endogenous RHAMM. Increased RHAMM expression in the various cell lines was correlated with increased Cx43 and GJIC. These changes were accompanied by a loss of contact inhibition and decreased focal adhesions in all, and elevated motility of most but not all, cell lines tested. RHAMM-induced transformation also resulted in elevated GJIC and Cx43 levels. Reversion to normal growth, motility, and focal adhesion density following transfection of H-ras-transformed fibroblasts with the mutant form of RHAMM was associated with decreases in both Cx43 expression and GJIC. Transfection of 10T1/2 fibroblasts with RHAMM II (exons 5-14) produced altered contact behavior and increased both Cx43 and GJIC but had no effect on motility. All cells expressing high levels of RHAMM, regardless of the isoform, exhibited a lower density of focal adhesions, which corresponds to a reduced organizational state of the cytoskeleton. These results indicate that regulation of GJIC most strongly correlates with altered focal adhesion and cytoskeleton organization that can lead to various secondary responses, including motility, growth, and transformation, and suggest that RHAMM regulates GJIC and Cx43 expression possibly through its actions on focal adhesions and the associated cytoskeleton.

摘要

间隙连接细胞间通讯(GJIC)和连接蛋白表达在细胞迁移、生长和转化过程中常常发生改变,而这些过程均伴有细胞骨架重组。最近研究表明,用透明质酸介导的运动受体(RHAMM)的各种亚型转染成纤维细胞,会对细胞运动、生长、细胞接触行为以及含肌动蛋白的细胞骨架成分产生深远且不同的影响。因此,这些细胞提供了一个理想的系统,可用于研究与成纤维细胞中GJIC调控以及连接蛋白43(Cx43)表达相关的参数。我们使用了用RHAMM亚型或阻断内源性RHAMM功能的显性负性突变形式的RHAMM转染的10T1/2成纤维细胞系。各细胞系中RHAMM表达的增加与Cx43和GJIC的增加相关。这些变化伴随着所有细胞失去接触抑制和粘着斑减少,以及大多数(但并非全部)受试细胞系的运动性升高。RHAMM诱导的转化还导致GJIC和Cx43水平升高。用RHAMM突变形式转染H-ras转化的成纤维细胞后,恢复正常生长、运动性和粘着斑密度与Cx43表达和GJIC的降低相关。用RHAMM II(外显子5-14)转染10T1/2成纤维细胞会改变接触行为,并增加Cx43和GJIC,但对运动性没有影响。所有表达高水平RHAMM的细胞,无论亚型如何,均表现出较低密度的粘着斑,这对应于细胞骨架的组织状态降低。这些结果表明,GJIC的调控与粘着斑和细胞骨架组织的改变最密切相关,这可能导致各种次级反应,包括运动性、生长和转化,并提示RHAMM可能通过其对粘着斑和相关细胞骨架的作用来调节GJIC和Cx43表达。

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