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Construction of a human chromosome 4 YAC pool and analysis of artificial chromosome stability.

机译:人类4号染色体YAC库的构建和人工染色体稳定性分析。

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摘要

In order to construct a human chromosome 4-specific YAC library, we have utilized pYAC4 and a mouse/human hybrid cell line HA(4)A in which the only human chromosome present is chromosome 4. From this cell line, approximately 8Mb of chromosome 4 have been cloned. The library includes 65 human-specific clones that range in size from 30kb to 290kb, the average size being 108kb. In order to optimize the manipulation of YAC libraries, we have begun to investigate the stability of YACs containing human DNA in yeast cells; these studies will also determine if there are intrinsic differences in the properties of chromosomes containing higher eukaryotic DNAs. We are examining two kinds of stability: 1] mitotic stability, the ability of the YAC to replicate and segregate properly during mitosis, and 2] structural stability, the tendency of the YAC to rearrange. We have found that the majority of YACs examined are one to two orders of magnitude less stable than authentic yeast chromosomes. Interestingly, the largest YAC analyzed displayed a loss rate typical for natural yeast chromosomes. Our results also suggest that increasing the length of an artificial chromosome improves its mitotic stability. One YAC that showed a very high frequency of rearrangement by mitotic recombination proved to be a mouse/human chimera. In contrast to studies using total human DNA, the frequency of chimeras (i.e., mouse/human) in the YAC pool appeared to be low.
机译:为了构建人类4号染色体特有的YAC文库,我们利用了pYAC4和小鼠/人类杂交细胞系HA(4)A,其中唯一的人类染色体是4号染色体。从该细胞系中,大约8Mb的染色体已克隆4个。该文库包含65个人类特异性克隆,大小范围为30kb至290kb,平均大小为108kb。为了优化YAC文库的操作,我们已开始研究含人DNA的YAC在酵母细胞中的稳定性。这些研究还将确定含有较高水平的真核DNA的染色体的特性是否存在固有差异。我们正在研究两种稳定性:1]有丝分裂稳定性,YAC在有丝分裂过程中正确复制和分离的能力,以及2]结构稳定性,YAC重排的趋势。我们发现,所检查的大多数YAC的稳定性都比真正的酵母染色体低1-2个数量级。有趣的是,分析的最大YAC显示出天然酵母染色体典型的丢失率。我们的结果还表明,增加人工染色体的长度可以改善其有丝分裂稳定性。一种通过有丝分裂重组显示非常高的重排频率的YAC被证明是小鼠/人嵌合体。与使用总人类DNA进行的研究相比,YAC库中的嵌合体(即小鼠/人)的频率似乎较低。

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