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家畜中的酵母人工染色体转基因技术:兔白化病的挽救

YAC transgenesis in farm animals: rescue of albinism in rabbits.

作者信息

Brem G, Besenfelder U, Aigner B, Müller M, Liebl I, Schütz G, Montoliu L

机构信息

Tierzucht und Genetik, VMU Wien Vienna, Austria.

出版信息

Mol Reprod Dev. 1996 May;44(1):56-62. doi: 10.1002/(SICI)1098-2795(199605)44:1<56::AID-MRD6>3.0.CO;2-S.

Abstract

The generation of transgenic mice with mammalian genes cloned in yeast artificial chromosomes (YACs) has generated great interest in the field of gene transfer into livestock. Many of the problems associated with standard transgenesis-such as lack of crucial regulator elements and position effects related to the integration site, which lead to variation in expression levels irrespective of the dose of the transgene-have been practically overcome. The large size of YAC-derived gene constructs (in excess of 1 Mb) facilitates the presence and transfer of all elements required for the faithful regulation of a gene. With the experiments discussed in this report, we have addressed the possibility of applying the obvious advantages of YAC transgenesis to farm animals. We have generated transgenic rabbits carrying a 250 kb YAC covering the mouse tyrosinase gene by pronuclear microinjection, and thus rescued the albino phenotype of the transgenic individuals. To date, this is the first demonstration of a successful transfer of large genetic units into the germ line of farm animals. This development might improve the occurrence of transgene expression at physiological levels and specific sites in livestock. YAC transgenesis therefore will be applied in genetic engineering, for example, in the production of pharmacologically interesting proteins encoded by large gene units and generating transgenic donors for xenotransplantation.

摘要

利用酵母人工染色体(YAC)克隆哺乳动物基因来培育转基因小鼠,这在将基因转入家畜的领域引发了极大的兴趣。许多与标准转基因技术相关的问题,比如缺乏关键调控元件以及与整合位点相关的位置效应(这会导致无论转基因剂量如何,表达水平都会出现变化),实际上都已得到克服。源自YAC的基因构建体尺寸很大(超过1兆碱基对),这有利于完整调控一个基因所需的所有元件的存在与转移。通过本报告中所讨论的实验,我们探讨了将YAC转基因技术的明显优势应用于农场动物的可能性。我们通过原核显微注射培育出了携带一个覆盖小鼠酪氨酸酶基因的250千碱基对YAC的转基因兔子,从而挽救了转基因个体的白化病表型。迄今为止,这是首次证明将大型遗传单位成功转入农场动物生殖系的实例。这一进展可能会提高家畜在生理水平和特定部位的转基因表达发生率。因此,YAC转基因技术将应用于基因工程领域,例如,用于生产由大型基因单位编码的具有药理学意义的蛋白质,以及培育用于异种移植的转基因供体。

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