项目名称: 以细胞有丝分裂中纺锤体驱动蛋白为靶点的RNA干扰药物研究
项目编号: No.21202194
项目类型: 青年科学基金项目
立项/批准年度: 2013
项目学科: 有机化学
项目作者: 王芳
作者单位: 中国科学院生物物理研究所
项目金额: 25万元
中文摘要: 纺锤体驱动蛋白(kinesin spindle protein, KSP)是一种对有丝分裂纺锤体的形成起关键作用的驱动蛋白, 人体内的KSP也称为Eg 5,其抑制剂能阻碍细胞周期正常分裂、抑制肿瘤细胞增殖, 是一类新的抗有丝分裂药物。它在增殖细胞中高表达,因此KSP抑制剂具有高特异性和低毒副作用,能避免直接破坏微管的药物所具有的神经毒性。近几年很多KSP抑制剂相继被开发,但主要集中在小分子药物上。 RNA干扰(RNAi)是由双链RNA介导的序列特异性转录后基因沉默过程,其通过双链RNA 分子在mRNA 水平上关闭相关基因的表达。恶性肿瘤是涉及多种基因表达或功能异常的多因素多步骤的病变过程,通过基因手段来治疗恶性肿瘤将是根治癌症的希望。RNAi最主要的特点就在于它能针对特异基因起作用,通过设计合成针对KSP的RNA干扰药物抑制纺锤体驱动蛋白的表达,从而达到抑制肿瘤细胞增殖、治疗癌症的目的。
中文关键词: RNA干扰;基因治疗;癌症;肿瘤;纺锤体驱动蛋白
英文摘要: Cancer is a worldwide disease and millions of patients die from cancers every year. A common strategy for cancer therapy is the development of drugs that interrupt the cell cycle during mitosis. A variety of such drugs that bind to tubulin and thus inhibit the spindle assembly are currently used in cancer therapy. But they are non- specific to tumor cells and cause serious neuropathy - associated side effects and multidrug resistance that has hindered their clinical efficacy. The mitotic kinesins are new target proteins for cancer therapy. They are a super- family of intra - cellular motor proteins and play vital roles in nearly all stages of cell division. In particular, Eg 5 belongs to a special class of kinesins and it functions exclusively during mitosis. Eg 5 is responsible for the separation of the spindle - pole and the formation of the bipolar mitotic spindle. Inhibition of Eg 5 causes cells to arrest in mitosis with a very characteristic phenotype: cells form a monastrol spindle with an array of microtubules emanating from a pair of non- separated centrosomes. Prolonged mitotic arrest leads to the activation of the mitotic checkpoint and subsequent apoptotic cell death. Also it is highly expressed in tumor cells, so it becomes a novel target for cancer chemotherapy. Since the discovery of monastrol,
英文关键词: RNA interference;gene therapy;cancer;mitotic kinesin Eg 5;kinesin spindle protein