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癌症研究中的转基因和基因敲除小鼠。

Transgenic and gene knockout mice in cancer research.

作者信息

Viney J L

机构信息

Imperial Cancer Research Fund, London, UK.

出版信息

Cancer Metastasis Rev. 1995 Jun;14(2):77-90. doi: 10.1007/BF00665792.

Abstract

Transgenic animal technology, and the use of germline manipulation for the creation of targeted gene mutations, has resulted in a plethora of murine models for cancer research. Our understanding of some of the important issues regarding the mechanisms controlling cell division, differentiation and death has dramatically advanced in recent years through exploitation of these techniques to generate transgenic mice. In particular, the generation of mice with targeted mutations in genes encoding proteins of oncological interest has proved to be a useful way of elucidating the function of these gene products in vivo. Transgenic mouse models have provided some insight into the complex oncogenic events contributing to cellular dysregulation and the loss of growth control that can lead to tumorigenesis. These animal studies have highlighted the fact that there are many different stages at which the loss of cell cycle control can occur, as a result of mutations affecting proteins anywhere from the cell surface to the nucleus. Although mutations affecting growth factors, growth factor receptors, signal transduction molecules, cytoplasmic proteins or nuclear proteins might appear to be very distinct, the end result of these changes may be accelerated and unchecked cell growth ultimately leading to cancer. It is beyond the scope of this review to mention every animal model that has been developed for cancer research, especially since many of the early studies have been covered extensively in previous reviews. This article will instead focus on a small selection of transgenic and knockout animal models which exemplify how proteins from distinct localisations along multiple pathways can contribute to loss of cell cycle control and the pathogenesis of cancer.

摘要

转基因动物技术以及利用种系操作来创建靶向基因突变,已产生了大量用于癌症研究的小鼠模型。近年来,通过利用这些技术来培育转基因小鼠,我们对一些有关控制细胞分裂、分化和死亡机制的重要问题的理解有了显著进展。特别是,在编码具有肿瘤学研究价值的蛋白质的基因中产生靶向突变的小鼠,已被证明是阐明这些基因产物在体内功能的一种有用方法。转基因小鼠模型为导致细胞失调和生长控制丧失从而引发肿瘤发生的复杂致癌事件提供了一些见解。这些动物研究突出了这样一个事实,即由于影响从细胞表面到细胞核任何位置蛋白质的突变,细胞周期控制丧失可能发生在许多不同阶段。尽管影响生长因子、生长因子受体、信号转导分子、细胞质蛋白或核蛋白的突变可能看起来非常不同,但这些变化的最终结果可能是细胞生长加速且不受控制,最终导致癌症。提及为癌症研究开发的每一种动物模型超出了本综述的范围,尤其是因为许多早期研究在以前的综述中已被广泛涵盖。本文将转而关注一小部分转基因和基因敲除动物模型,这些模型例证了沿着多条途径来自不同定位的蛋白质如何导致细胞周期控制丧失和癌症发病机制。

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