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与转移抑制相关的同型缝隙连接通讯随蛋白激酶 A 活性的增加而增加,并且不受 PI3K 抑制的影响。

Homotypic gap junctional communication associated with metastasis suppression increases with PKA activity and is unaffected by PI3K inhibition.

机构信息

Department of Pathology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

出版信息

Cancer Res. 2010 Dec 1;70(23):10002-11. doi: 10.1158/0008-5472.CAN-10-2606. Epub 2010 Nov 23.

Abstract

Loss of gap junctional intercellular communication (GJIC) between cancer cells is a common characteristic of malignant transformation. This communication is mediated by connexin proteins that make up the functional units of gap junctions. Connexins are highly regulated at the protein level and phosphorylation events play a key role in their trafficking and degradation. The metastasis suppressor breast cancer metastasis suppressor 1 (BRMS1) upregulates GJIC and decreases phosphoinositide-3-kinase (PI3K) signaling. On the basis of these observations, we set out to determine whether there was a link between PI3K and GJIC in tumorigenic and metastatic cell lines. Treatment of cells with the well-known PI3K inhibitor LY294002, and its structural analogue LY303511, which does not inhibit PI3K, increased homotypic GJIC; however, we found the effect to be independent of PI3K/AKT inhibition. We show in multiple cancer cell lines of varying metastatic capability that GJIC can be restored without enforced expression of a connexin gene. In addition, while levels of connexin 43 remained unchanged, its relocalization from the cytosol to the plasma membrane was observed. Both LY294002 and LY303511 increased the activity of protein kinase A (PKA). Moreover, PKA blockade by the small molecule inhibitor H89 decreased the LY294002/LY303511-mediated increase in GJIC. Collectively, our findings show a connection between PKA activity and GJIC mediated by PI3K-independent mechanisms of LY294002 and LY303511. Manipulation of these signaling pathways could prove useful for antimetastatic therapy.

摘要

细胞间缝隙连接通讯(GJIC)的丧失是恶性转化的一个常见特征。这种通讯是由连接蛋白介导的,连接蛋白构成了缝隙连接的功能单位。连接蛋白在蛋白质水平上受到高度调节,磷酸化事件在其运输和降解中起着关键作用。转移抑制因子乳腺癌转移抑制因子 1(BRMS1)上调 GJIC 并降低磷酸肌醇-3-激酶(PI3K)信号。基于这些观察结果,我们着手确定在致瘤和转移细胞系中是否存在 PI3K 和 GJIC 之间的联系。用众所周知的 PI3K 抑制剂 LY294002 及其结构类似物 LY303511 (不抑制 PI3K)处理细胞,可增加同质 GJIC;然而,我们发现这种作用与 PI3K/AKT 抑制无关。我们在具有不同转移能力的多种癌细胞系中表明,无需强制表达连接蛋白基因即可恢复 GJIC。此外,虽然连接蛋白 43 的水平保持不变,但观察到其从细胞质到质膜的重新定位。LY294002 和 LY303511 均可增加蛋白激酶 A(PKA)的活性。此外,小分子抑制剂 H89 阻断 PKA 可降低 LY294002/LY303511 介导的 GJIC 增加。总之,我们的研究结果表明,PKA 活性与 GJIC 之间存在联系,这种联系是通过 LY294002 和 LY303511 的非 PI3K 依赖机制介导的。对这些信号通路的操纵可能对抗转移治疗有用。

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