通过激活和抑制受体的发散靶向概念作为一种新的化疗策略:对强dna反应性组合模仿的信号反应。

Journal of signal transduction Pub Date : 2012-01-01 Epub Date: 2012-03-07 DOI:10.1155/2012/282050
Heather L Watt, Zakaria Rachid, Bertrand J Jean-Claude
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引用次数: 4

摘要

最近,我们报道了多靶点ErbB1抑制剂- dna损伤组合分子与OCT的结合,以下调ErbB1并激活SSTRs。缺乏转化为细胞杀伤的部分原因被认为是ErbB1阻断不足和DNA损伤。在这项研究中,我们评估了细胞对更积极地破坏DNA并诱导ErbB1磷酸化更强衰减的分子的反应。我们使用了三种表达低水平(U87MG)或转染过表达ErbB1野生型(U87/EGFR)或变体(U87/EGFRvIII)的细胞系。结果表明,易瑞沙±HN2及其联合分子ZRBA4和ZR2003可显著阻断U87MG细胞ErbB1磷酸化。添加OCT显著改变细胞周期分布。DNA损伤反应通路分析显示,HN2和组合分子对p53有强烈的上调作用。细胞凋亡仅在暴露于HN2 48小时后诱导。所有其他治疗均导致细胞坏死。这与Akt-Bad通路激活和survivin上调是一致的。尽管这些分子具有很强的DNA损伤特性和下调ErbB1磷酸化,但SSTR激活对细胞周期分布的影响最大。因此,结合ErbB1抑制和SSTR激活的任何增强的抗增殖作用必须在细胞周期阻滞的背景下解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Concept of Divergent Targeting through the Activation and Inhibition of Receptors as a Novel Chemotherapeutic Strategy: Signaling Responses to Strong DNA-Reactive Combinatorial Mimicries.

Recently, we reported the combination of multitargeted ErbB1 inhibitor-DNA damage combi-molecules with OCT in order to downregulate ErbB1 and activate SSTRs. Absence of translation to cell kill was believed to be partially due to insufficient ErbB1 blockage and DNA damage. In this study, we evaluated cell response to molecules that damage DNA more aggressively and induce stronger attenuation of ErbB1 phosphorylation. We used three cell lines expressing low levels (U87MG) or transfected to overexpress wildtype (U87/EGFR) or a variant (U87/EGFRvIII) of ErbB1. The results showed that Iressa ± HN2 and the combi-molecules, ZRBA4 and ZR2003, significantly blocked ErbB1 phosphorylation in U87MG cells. Addition of OCT significantly altered cell cycle distribution. Analysis of the DNA damage response pathway revealed strong upregulation of p53 by HN2 and the combi-molecules. Apoptosis was only induced by a 48 h exposure to HN2. All other treatments resulted in cell necrosis. This is in agreement with Akt-Bad pathway activation and survivin upregulation. Despite strong DNA damaging properties and downregulation of ErbB1 phosphorylation by these molecules, the strongest effect of SSTR activation was on cell cycle distribution. Therefore, any enhanced antiproliferative effects of combining ErbB1 inhibition with SSTR activation must be addressed in the context of cell cycle arrest.

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