Suppression of human prostate cancer cell growth by forced expression of connexin genes.

P P Mehta, C Perez-Stable, M Nadji, M Mian, K Asotra, B A Roos
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引用次数: 55

Abstract

The cell-to-cell channels in gap junctions, formed of proteins called connexins (Cxs), provide a direct intercellular pathway for the passage of small signaling molecules (< or = 1 kD) between the cytoplasmic interiors of adjoining cells. It has been proposed that alteration in the expression and function of Cxs may be one of the genetic changes involved in the initiation of neoplasia. To elucidate the role of Cxs in the pathogenesis of human prostate cancer (PCA), the pattern of expression of Cx alpha 1 (Cx43) and Cx beta 1 (Cx32) was studied by immunocytochemical analysis in normal prostate and in prostate tumors of different histological grades. While normal prostate epithelial cells expressed only Cx beta 1, both Cx alpha 1 and Cx beta 1 were detected in PCA cells. The Cxs were localized at the cell-cell contact areas in normal prostate and well-differentiated prostate tumors; however, as prostate tumors progressed to more undifferentiated stages, the Cxs were localized in the cytoplasm, followed by an eventual loss in advanced stages. Thus, epithelial cells from prostate tumors showed subtle and gross alterations with regard to expression of Cx alpha 1 and Cx beta 1 and their assembly into gap junctions during the progression of PCA. Retroviral-mediated transfer of Cx alpha 1 and Cx beta 1 into a Cx-deficient human PCA cell line, LNCaP, inhibited growth, retarded tumorigenicity, and induced differentiation, and these effects were contingent upon the formation of gap junctions. In addition, the capacity to form gap junctions in most Cx-transduced LNCaP cells was lost upon serial passage. Taken together, these findings indicate that the control of proliferation and differentiation of epithelial cells in prostate tumors may depend on the appropriate assembly of Cx beta 1 and Cx alpha 1 into gap junctions and that the development of PCA may involve the positive selection of cells with an impaired ability to form gap junctions.

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通过强制表达连接蛋白基因抑制人类前列腺癌细胞的生长。
间隙连接中的细胞间通道由称为连接蛋白(Cxs)的蛋白质形成,为相邻细胞的细胞质内部之间的小信号分子(<或=1 kD)通过提供了直接的细胞间通道。有人认为,Cxs 表达和功能的改变可能是导致肿瘤发生的基因变化之一。为了阐明 Cxs 在人类前列腺癌(PCA)发病机制中的作用,我们通过免疫细胞化学分析研究了 Cx alpha 1(Cx43)和 Cx beta 1(Cx32)在正常前列腺和不同组织学分级的前列腺肿瘤中的表达模式。正常前列腺上皮细胞只表达 Cx beta 1,而在 PCA 细胞中则同时检测到 Cx alpha 1 和 Cx beta 1。在正常前列腺和分化良好的前列腺肿瘤中,Cxs定位于细胞-细胞接触区;然而,当前列腺肿瘤发展到更多的未分化阶段时,Cxs定位于细胞质中,随后在晚期阶段最终消失。因此,前列腺肿瘤的上皮细胞在Cx alpha 1和Cx beta 1的表达及其组装成间隙连接方面,在PCA的发展过程中出现了微妙和显著的变化。逆转录病毒介导的 Cx alpha 1 和 Cx beta 1 转入 Cx 缺失的人类 PCA 细胞系 LNCaP,抑制了生长、延缓了致瘤性并诱导了分化,而这些作用都取决于间隙连接的形成。此外,大多数 Cx 转导的 LNCaP 细胞在连续通过后失去了形成间隙连接的能力。综上所述,这些研究结果表明,前列腺肿瘤上皮细胞的增殖和分化控制可能取决于 Cx beta 1 和 Cx alpha 1 能否适当地组装成间隙连接,而 PCA 的发展可能涉及对形成间隙连接能力受损的细胞进行正向选择。
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