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RNA Binding Protein as an Emerging Therapeutic Target for Cancer Prevention and Treatment

机译:RNA结合蛋白作为癌症预防和治疗的新兴治疗靶标

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摘要

After transcription, RNAs are always associated with RNA binding proteins (RBPs) to perform biological activities. RBPs can interact with target RNAs in sequence- and structure-dependent manner through their unique RNA binding domains. In development and progression of carcinogenesis, RBPs are aberrantly dysregulated in many human cancers with various mechanisms, such as genetic alteration, epigenetic change, noncoding RNA-mediated regulation, and post-translational modifications. Upon deregulation in cancers, RBPs influence every step in the development and progression of cancer, including sustained cell proliferation, evasion of apoptosis, avoiding immune surveillance, inducing angiogenesis, and activating metastasis. To develop therapeutic strategies targeting RBPs, RNA interference-based oligonucleotides or small molecule inhibitors have been screened based on reduced RBP-RNA interaction and changed level of target RNAs. Identification of binding RNAs with high-throughput techniques and integral analysis of multiple datasets will help us develop new therapeutic drugs or prognostic biomarkers for human cancers.
机译:转录后,RNA始终与RNA结合蛋白(RBP)相关联以执行生物学活性。 RBP可以通过其独特的RNA结合域以序列和结构依赖性的方式与靶RNA相互作用。在癌变的发生和发展中,RBP在许多人类癌症中异常失调,其具有多种机制,例如遗传改变,表观遗传改变,非编码RNA介导的调控和翻译后修饰。在癌症中放松调节后,RBP会影响癌症发展和进展的每个步骤,包括持续的细胞增殖,逃避凋亡,避免免疫监视,诱导血管生成和激活转移。为了开发针对RBP的治疗策略,已经基于减少的RBP-RNA相互作用和靶RNA的水平变化筛选了基于RNA干扰的寡核苷酸或小分子抑制剂。利用高通量技术鉴定结合RNA并对多个数据集进行整体分析将有助于我们开发针对人类癌症的新治疗药物或预后生物标记物。

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