Texas Tech University Health Sciences Center, Paul L. Foster School of Medicine, Center of Excellence in Cancer Research, 5001 El Paso Drive, MSB1 Room 2111, El Paso, Texas 79905 U.S.A.
Cancer Genomics Proteomics. 2013 Nov-Dec;10(6):251-63.
Therapeutic targeting of Rho-Associated, Coiled-Coil Containing Protein Kinase (ROCK) signaling for tumor cells and tumor endothelium has shown efficacy in pre-clinical tumors models, and a better understanding of how proteins regulate tumor progression will strengthen our knowledge over disease etiology and treatment of patients with cancer. Recent reports have shown that ROCK activity is critical for the expression of a large number of mRNA transcripts across multiple cell types including endothelial cells.
To examine the effects of ROCK proteins on microRNA (miRNA) expression in tumor-forming endothelial cells, we utilized microarrays to evaluate expression levels of 1088 miRNAs in vascular tumor-forming endothelial cells knocked-down for ROCK1 or ROCK2 or treated with a pharmacological inhibitor of ROCK activity.
Microarray analysis demonstrated that inhibiting ROCK activity altered global miRNA expression. We confirmed our findings using qPCR and identified cell-cycle progression, calcium transport, and neurogenesis/synaptogenesis as the most highly overrepresented predicted target gene networks for the identified miRNAs whose expression was altered by ROCK inhibition.
ROCK signaling induces large-scale changes in global miRNA expression and may lead to a better understanding of how these proteins affect aberrant vascular states.
针对 Rho 相关卷曲螺旋蛋白激酶 (ROCK) 信号通路的治疗性靶向作用已在临床前肿瘤模型中显示出疗效,对蛋白如何调节肿瘤进展有更深入的了解将有助于我们加强对疾病病因和癌症患者治疗的认识。最近的研究报告表明,ROCK 活性对于多种细胞类型(包括内皮细胞)中大量 mRNA 转录本的表达至关重要。
为了研究 ROCK 蛋白对肿瘤形成内皮细胞中 microRNA (miRNA) 表达的影响,我们利用微阵列评估了 ROCK1 或 ROCK2 敲低或用 ROCK 活性的药理学抑制剂处理的血管肿瘤形成内皮细胞中 1088 个 miRNA 的表达水平。
微阵列分析表明,抑制 ROCK 活性改变了全局 miRNA 表达。我们使用 qPCR 对结果进行了验证,并鉴定了细胞周期进展、钙转运以及神经发生/突触发生作为由 ROCK 抑制改变的表达的鉴定 miRNA 最显著的过表达预测靶基因网络。
ROCK 信号诱导全局 miRNA 表达的大规模变化,并可能有助于更好地了解这些蛋白如何影响异常血管状态。