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基于人工染色体的转基因在基因组功能研究中的应用

Artificial chromosome-based transgenes in the study of genome function.

作者信息

Heaney Jason D, Bronson Sarah K

机构信息

Department of Cellular and Molecular Physiology, The Pennsylvania State University College of Medicine, The Milton S. Hershey Medical Center, 500 University Drive, Hershey, PA 17033-0850, USA.

出版信息

Mamm Genome. 2006 Aug;17(8):791-807. doi: 10.1007/s00335-006-0023-9. Epub 2006 Aug 4.

Abstract

The transfer of large DNA fragments to the mouse genome in the form of bacterial, yeast or phage artificial chromosomes is an important process in the definition of transcription units, the modeling of inherited disease states, the dissection of candidate regions identified by linkage analysis and the construction of in vivo reporter genes. However, as with small recombinant transgenes, the transferred sequences are usually integrated randomly often with accompanying genomic alterations and variable expression of the introduced genes due to the site of integration and/or copy number. Therefore, alternative methods of integrating large genomic transgenes into the genome have been developed to avoid the variables associated with random integration. This review encourages the reader to imagine the large variety of applications where artificial chromosome transgenes can facilitate in vivo and ex vivo studies in the mouse and provides a context for making the necessary decisions regarding the specifics of experimental design.

摘要

以细菌人工染色体、酵母人工染色体或噬菌体人工染色体的形式将大的DNA片段转移到小鼠基因组中,这在转录单元的定义、遗传性疾病状态的建模、连锁分析所确定候选区域的剖析以及体内报告基因的构建等过程中是一个重要环节。然而,与小型重组转基因一样,转移的序列通常随机整合,常常伴随着基因组改变以及由于整合位点和/或拷贝数导致的导入基因表达的变化。因此,已开发出将大型基因组转基因整合到基因组中的替代方法,以避免与随机整合相关的变量。本综述鼓励读者想象人工染色体转基因可促进小鼠体内和体外研究的各种应用,并为就实验设计细节做出必要决策提供背景信息。

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