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永生化的连接蛋白43基因敲除细胞系表现出与转化表型相关的一部分生物学特性。

Immortalized connexin43 knockout cell lines display a subset of biological properties associated with the transformed phenotype.

作者信息

Martyn K D, Kurata W E, Warn-Cramer B J, Burt J M, TenBroek E, Lau A F

机构信息

Molecular Carcinogenesis Program, Cancer Research Center, University of Hawaii at Manoa 96813, USA.

出版信息

Cell Growth Differ. 1997 Sep;8(9):1015-27.

PMID:9300183
Abstract

Immortalized cells from embryonic connexin43 knockout mice (Cx43-/-) and homozygous littermates (Cx43+/+) were cloned and characterized to determine whether the absence of Cx43 function would induce observable phenotypic changes. Cells of the Cx43+/+ clones expressed Cx43 and engaged in gap junctional communication with 10-12 neighboring cells. The Cx43-/- cells were devoid of Cx43 and communicated to less than 1 cell. Electrophysiological analysis indicated that the Cx43-/- cells communicated through Cx45 channels from 8-80-fold less than did the Cx43+/+ subclones, which seemed to communicate through Cx43 and Cx45 channels. The Cx43-/- clones grew at faster rates and to higher saturation densities, had a more spindly morphology, were more refractile, and adhered less well to the substratum than did the Cx43+/+ clones. Reintroducing the Cx43 gene into the Cx43-/- clones resulted in three subclones that communicated to 3-4 cells. Partial restoration of gap junctional communication in the three subclones was accompanied by reduced growth rates and saturation densities (2-fold compared to that of parental Cx43-/- clones) but no reversions in morphology or cell-substratum adhesion. The increased growth rates and saturation densities, altered morphology, and decreased cell adhesion displayed by the Cx43-/- clones reflect a subset of the properties of transformed cells. These studies advance the hypothesis that loss of Cx43 function during development may cause cells to acquire a preneoplastic condition.

摘要

克隆并鉴定了来自胚胎连接蛋白43基因敲除小鼠(Cx43-/-)和同基因纯合子小鼠(Cx43+/+)的永生化细胞,以确定Cx43功能的缺失是否会诱导可观察到的表型变化。Cx43+/+克隆的细胞表达Cx43,并与10-12个相邻细胞进行间隙连接通讯。Cx43-/-细胞缺乏Cx43,与少于1个细胞进行通讯。电生理分析表明,Cx43-/-细胞通过Cx45通道进行通讯的能力比Cx43+/+亚克隆低8-80倍,而Cx43+/+亚克隆似乎通过Cx43和Cx45通道进行通讯。与Cx43+/+克隆相比,Cx43-/-克隆生长速度更快,达到更高的饱和密度,形态更细长,更具折光性,且与基质的粘附性更差。将Cx43基因重新导入Cx43-/-克隆中产生了三个与3-4个细胞进行通讯的亚克隆。这三个亚克隆间隙连接通讯的部分恢复伴随着生长速度和饱和密度的降低(与亲代Cx43-/-克隆相比降低了2倍),但形态或细胞与基质的粘附性没有恢复。Cx43-/-克隆显示出的生长速度增加、饱和密度增加、形态改变和细胞粘附性降低反映了转化细胞的一部分特性。这些研究提出了一个假说,即在发育过程中Cx43功能的丧失可能导致细胞获得一种肿瘤前状态。

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