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Automated sequencing of complete mitochondrial genomes from laser-capture microdissected samples

机译:激光捕获显微切割样品中完整线粒体基因组的自动测序

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摘要

Mitochondrial DNA mutations have been related to both aging and a variety of diseases such as cancer. Due to the relatively small size of the genome (16 kb) and with the use of automated DNA sequencing, the entire genome can be sequenced from clinical specimens in days. We present a reliable approach to complete mitochondrial genome sequencing from laser-capture microdissected human clinical cancer specimens that overcomes the inherent limitations of relatively small tissue samples and partial DNA degradation, which are unavoidable when laser-capture microdissection is used to attain pure populations of cells from heterogeneous tissues obtained from surgical procedures. The acquisition of sufficient template combined with a standard set of 18 pairs of PCR primers allows for the efficient amplification of the genome. Subsequent single-stranded amplification is performed using 36 sequencing primers, and samples are run on an ABI PRISM(R) 3100 Genetic Analyzer. The use of this procedure should allow even investigators with little experience sequencing from clinical specimens success incomplete mitochondrial genome sequencing.
机译:线粒体DNA突变与衰老和多种疾病(例如癌症)有关。由于基因组相对较小(16 kb),并且使用自动DNA测序,因此可以在几天内从临床标本中对整个基因组进行测序。我们提出了一种可靠的方法,可以从激光捕获的显微切割的人类临床癌症标本中完成线粒体基因组测序,该方法克服了相对较小的组织样本和部分DNA降解的固有局限性,而当使用激光捕获显微切割获得纯细胞群体时,这是不可避免的从外科手术获得的异质组织中提取。获得足够的模板并结合标准的18对PCR引物对可实现基因组的有效扩增。随后使用36个测序引物进行单链扩增,并在ABIPRISM®3100 Genetic Analyzer上运行样品。使用该程序甚至可以使很少有经验的临床研究者从临床标本中成功完成线粒体基因组测序。

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