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酵母突变体作为鉴定化学敏感性决定因素的模型系统。

Yeast mutants as a model system for identification of determinants of chemosensitivity.

作者信息

Perego P, Jimenez G S, Gatti L, Howell S B, Zunino F

机构信息

Istituto Nazionale Tumori, Milan, Italy.

出版信息

Pharmacol Rev. 2000 Dec;52(4):477-92.

Abstract

The fission yeast Schizosaccharomyces pombe and the budding yeast Saccharomyces cerevisiae have become valuable tools for the study of basic cellular functions of eukaryotic cells, including DNA repair mechanisms and cell cycle control. Since the major signaling pathways and cellular processes involved in cellular response to cytotoxic agents are conserved between yeasts and mammalian cells, these simple eukaryotic systems could be excellent models for the identification of molecular/cellular mechanisms of sensitivity to antitumor drugs. We describe relevant biological features of yeast cells and potential applications derived by their genetic manipulation. In particular, we have outlined the role of genes involved in repair processes and in checkpoint control, with specific reference to genes regulating radiation-sensitivity. Specific examples are provided concerning the use of both yeasts in understanding the mechanism of action of platinum compounds and topoisomerase inhibitors. The availability of the genomic sequence of these organisms as well as of new technologies (microarrays, proteomics) is expected to allow the identification of potential drug targets, since the drug discovery process is moving toward a genomic orientation. Among eukaryotic organisms, yeasts are suitable for easy genetic manipulations, and specific genetic alterations are exploitable for assessing the effects of chemotherapeutic agents with different mechanism of action. Although still at an early stage, this fast-moving field shows promise as a novel and potentially useful method for development of target-specific therapeutic approaches.

摘要

裂殖酵母粟酒裂殖酵母和芽殖酵母酿酒酵母已成为研究真核细胞基本细胞功能(包括DNA修复机制和细胞周期控制)的重要工具。由于酵母和哺乳动物细胞在细胞对细胞毒性剂的反应中涉及的主要信号通路和细胞过程是保守的,这些简单的真核系统可能是鉴定抗肿瘤药物敏感性分子/细胞机制的优秀模型。我们描述了酵母细胞的相关生物学特性以及通过其基因操作衍生的潜在应用。特别是,我们概述了参与修复过程和检查点控制的基因的作用,特别提到了调节辐射敏感性的基因。提供了关于使用这两种酵母理解铂化合物和拓扑异构酶抑制剂作用机制的具体例子。这些生物体基因组序列以及新技术(微阵列、蛋白质组学)的可用性有望用于鉴定潜在的药物靶点,因为药物发现过程正朝着基因组方向发展。在真核生物中,酵母适合进行简单的基因操作,特定的基因改变可用于评估具有不同作用机制的化疗药物的效果。尽管仍处于早期阶段,但这个快速发展的领域有望成为开发靶点特异性治疗方法的一种新颖且潜在有用的方法。

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