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利用Cre/反向loxP系统在小鼠胚胎干细胞杂交细胞中快速诱导大染色体缺失

Rapid induction of large chromosomal deletions by a Cre/inverted loxP system in mouse ES Cell hybrids.

作者信息

Otsuji Tomomi, Matsumura Hiroyuki, Suzuki Tatsuya, Nakatsuji Norio, Tada Takashi, Tada Masako

机构信息

ReproCELL, Inc., 3-16-13 Shirokanedai, Minato-ku, Tokyo 108-0071, Japan.

出版信息

J Mol Biol. 2008 Apr 25;378(2):328-36. doi: 10.1016/j.jmb.2008.01.065. Epub 2008 Feb 2.

DOI:10.1016/j.jmb.2008.01.065
PMID:18353367
Abstract

Loss of heterozygosity by whole or partial loss of chromosomal regions is crucial to genetic disorders, cancers and diseases. It is difficult to analyze the mechanisms of pathogenesis caused by large-scale chromosomal abnormalities due to the extreme rarity of this mutagenesis. Using a Cre/inverted loxP system, we have generated a chromosome elimination cassette (CEC) that induces a selective loss of embryonic-stem-cell-derived chromosomes in undifferentiated embryonic stem cell-somatic cell hybrids. Here, due to the increased expression of Cre, rapid formation of Cre recombination products and immediate loss of CEC-tagged chromosomes were detected by fluorescence in situ hybridization. Cre also initiated intrachromosomal recombination between identical short sequences outside loxP, leading to large chromosomal deletions of CEC-tagged regions. The Cre-mediated antiparallel synapses likely act as a scaffold to bring the identical short sequences into close proximity for recombination. This CEC technology might allow better understanding of the modulator sequences responsible for the tangled structure formation and its solution mechanism, inducing mitotic recombination leading to chromosomal deletions.

摘要

染色体区域的全部或部分缺失导致的杂合性丧失对于遗传疾病、癌症及其他疾病至关重要。由于这种诱变极为罕见,分析由大规模染色体异常引起的发病机制颇具难度。利用Cre/反向loxP系统,我们构建了一个染色体消除盒(CEC),该盒可在未分化的胚胎干细胞 - 体细胞杂种中诱导胚胎干细胞衍生染色体的选择性缺失。在此,通过荧光原位杂交检测到,由于Cre表达增加,Cre重组产物快速形成,且CEC标记的染色体立即丢失。Cre还引发了loxP外侧相同短序列之间的染色体内重组,导致CEC标记区域的大片段染色体缺失。Cre介导的反平行突触可能起到支架作用,使相同短序列紧密靠近以便重组。这种CEC技术或许能让我们更好地理解负责缠结结构形成及其解决机制的调节序列,诱导有丝分裂重组导致染色体缺失。

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