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Analysis of spontaneous mutation frequency and spectrum in cloned mice.

机译:克隆小鼠的自发突变频率和频谱分析。

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摘要

Therapeutic cloning by somatic cell nuclear transfer (SCNT) holds great promise as a vehicle for patient-specific, stem cell-based treatment of a variety of diseases or debilitations. However, this approach will require the use of donor somatic cells and manipulations in vitro of enucleated oocytes and reconstituted embryos from which embryonic stem (ES) cells can be derived. This is the first work to examine the potential introduction de novo of mutations as a result of the cloning process. To address this, we utilized the Big BlueRTM transgenic mouse system from Stratagene to determine the spontaneous mutation frequency and spectrum in germ cells, fetuses generated by natural mating or assisted reproductive technologies, three different somatic donor cell types typically used for cloning, and in cloned fetuses produced from each of these donor cell types. Results from this study show that the spontaneous mutation frequency in female germ cells is similar to that found in male germ cells at fetal and neonatal stages, and that these frequencies are significantly lower than those in developmentally matched somatic cells. This result suggests that SCNT embryos produced from somatic cells might carry more mutations than those produced by natural reproduction. However, our study found that the frequency of mutations in fetuses generated by assisted reproductive technologies is similar to the frequency found in fetuses conceived naturally, indicating neither maintenance nor manipulation of embryos in vitro introduce additional mutations in surviving embryos. Finally, results of our study of cloned fetuses showed that embryos generated by SCNT maintain a spontaneous mutation frequency comparable to embryos produced by natural conception, irrespective of the donor cell typed used, due to a "bottleneck effect" that limits propagation of acquired mutations during either natural reproduction, assisted reproduction or cloning. Importantly, our results show that because cloned fetuses maintain a relatively low frequency of point mutations (at least at a single test locus), comparable to that found in fetuses produced by natural reproduction, epigenetic mechanisms responsible for maintaining genetic integrity appear to be reprogrammed during the cloning process. Collectively, these results suggest that the genetic integrity of stem cells derived from therapeutically cloned blastocysts will be similar to that of stem cells derived from blastocysts produced by natural conception or assisted reproductive technologies. This study, conducted in a model transgenic system, represents an important step in the examination of the safety of therapeutic cloning before application to human patients is considered.
机译:通过体细胞核移植(SCNT)进行治疗性克隆,有望成为一种以患者为基础,以干细胞为基础的多种疾病或衰弱治疗工具。但是,这种方法将需要使用供体体细胞并在体外操作去核卵母细胞和重组胚胎,从而可以从中获得胚胎干(ES)细胞。这是研究克隆过程潜在的从头突变引入的第一项工作。为了解决这个问题,我们利用Stratagene的Big BlueRTM转基因小鼠系统确定了生殖细胞,通过自然交配或辅助生殖技术产生的胎儿,三种通常用于克隆的体细胞供体细胞类型以及克隆的自然突变频率和频谱。这些供体细胞类型产生的胎儿。这项研究的结果表明,在胎儿和新生儿阶段,女性生殖细胞的自发突变频率与男性生殖细胞的自发突变频率相似,并且这些频率明显低于发育匹配的体细胞中的频率。这一结果表明,由体细胞产生的SCNT胚胎可能比自然繁殖产生的突变携带更多的突变。但是,我们的研究发现,通过辅助生殖技术在胎儿中产生的突变频率与自然受孕的胎儿中发现的频率相似,这表明在体外维持或操纵胚胎都不会在存活的胚胎中引入其他突变。最后,我们对克隆胎儿的研究结果表明,由于使用了“瓶颈效应”,SCNT产生的胚胎保持的自发突变频率与自然受孕的胚胎相当,而与所使用的供体细胞类型无关,这是因为“瓶颈效应”限制了获得性突变的传播。自然繁殖,辅助繁殖或克隆。重要的是,我们的研究结果表明,由于克隆的胎儿维持相对较低的点突变频率(至少在单个测试位点上),与自然繁殖产生的胎儿中发现的频率相当,因此负责维持遗传完整性的表观遗传机制似乎已被重新编程。克隆过程。总的来说,这些结果表明,从治疗性克隆的胚泡衍生的干细胞的遗传完整性将类似于通过自然受孕或辅助生殖技术产生的胚泡的干细胞的遗传完整性。在模型转基因系统中进行的这项研究代表了在考虑将其应用于人类患者之前检查治疗性克隆安全性的重要步骤。

著录项

  • 作者

    Murphey, Patricia A.;

  • 作者单位

    The University of Texas at San Antonio.$bBiology.;

  • 授予单位 The University of Texas at San Antonio.$bBiology.;
  • 学科 Biology General.; Biology Molecular.; Biology Cell.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;分子遗传学;细胞生物学;
  • 关键词

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