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向酵母人工染色体添加功能性人类端粒。

Addition of functional human telomeres to YACs.

作者信息

Taylor S S, Larin Z, Smith C T

机构信息

Department of Biochemistry, University of Oxford, UK.

出版信息

Hum Mol Genet. 1994 Aug;3(8):1383-6. doi: 10.1093/hmg/3.8.1383.

Abstract

Linear mammalian artificial chromosomes (MACs) will require functional telomeres, a centromere and the ability to replicate autonomously. We are investigating the possibility of developing MACs from yeast artificial chromosomes (YACs). Retrofitting vectors have been constructed to replace YAC telomeres with cloned human telomeric DNA. A modified YAC was introduced into mammalian cells by spheroplast fusion and the frequency with which the retrofitted human telomeric DNA seeded the formation of a new telomere was determined by Bal31 digestion and cytogenetic analysis. The telomere adjacent to the selectable marker gene was functional in 5/46 clones (11%) while the telomere 200 kb away at the other end of the YAC was functional in 1/46 clones (2%). These results indicate that despite the in vivo modification of the end of the telomere by the addition of yeast sequences, human telomeres will function at a high enough frequency to allow the construction of MACs by this route.

摘要

线性哺乳动物人工染色体(MACs)需要功能性端粒、着丝粒以及自主复制的能力。我们正在研究从酵母人工染色体(YACs)开发MACs的可能性。已构建改造载体,用克隆的人类端粒DNA取代YAC端粒。通过原生质球融合将修饰后的YAC引入哺乳动物细胞,并通过Bal31消化和细胞遗传学分析确定改造后的人类端粒DNA引发新端粒形成的频率。与选择标记基因相邻的端粒在5/46个克隆(11%)中具有功能,而在YAC另一端200 kb处的端粒在1/46个克隆(2%)中具有功能。这些结果表明,尽管通过添加酵母序列在体内对端粒末端进行了修饰,但人类端粒仍将以足够高的频率发挥功能,从而允许通过这条途径构建MACs。

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