Protein Engineering Group, Illumina San Diego, CA, USA.
Front Microbiol. 2014 Jun 24;5:305. doi: 10.3389/fmicb.2014.00305. eCollection 2014.
Next-generation sequencing (NGS) technologies have revolutionized modern biological and biomedical research. The engines responsible for this innovation are DNA polymerases; they catalyze the biochemical reaction for deriving template sequence information. In fact, DNA polymerase has been a cornerstone of DNA sequencing from the very beginning. Escherichia coli DNA polymerase I proteolytic (Klenow) fragment was originally utilized in Sanger's dideoxy chain-terminating DNA sequencing chemistry. From these humble beginnings followed an explosion of organism-specific, genome sequence information accessible via public database. Family A/B DNA polymerases from mesophilic/thermophilic bacteria/archaea were modified and tested in today's standard capillary electrophoresis (CE) and NGS sequencing platforms. These enzymes were selected for their efficient incorporation of bulky dye-terminator and reversible dye-terminator nucleotides respectively. Third generation, real-time single molecule sequencing platform requires slightly different enzyme properties. Enterobacterial phage ϕ29 DNA polymerase copies long stretches of DNA and possesses a unique capability to efficiently incorporate terminal phosphate-labeled nucleoside polyphosphates. Furthermore, ϕ29 enzyme has also been utilized in emerging DNA sequencing technologies including nanopore-, and protein-transistor-based sequencing. DNA polymerase is, and will continue to be, a crucial component of sequencing technologies.
下一代测序(NGS)技术彻底改变了现代生物学和生物医学研究。推动这一创新的引擎是 DNA 聚合酶;它们催化生化反应,以获取模板序列信息。事实上,从一开始,DNA 聚合酶就是 DNA 测序的基石。大肠杆菌 DNA 聚合酶 I 蛋白水解(Klenow)片段最初用于桑格的双脱氧链终止 DNA 测序化学。从这些不起眼的开端开始,通过公共数据库可以获得大量生物体特异性的基因组序列信息。嗜温和嗜热细菌/古菌的 A/B 家族 DNA 聚合酶经过修饰并在当今的标准毛细管电泳(CE)和 NGS 测序平台中进行了测试。这些酶因其有效掺入大体积染料终止子和可逆染料终止子核苷酸而被选中。第三代实时单分子测序平台需要稍微不同的酶特性。肠杆菌噬菌体 ϕ29 DNA 聚合酶复制长串 DNA,并且具有有效掺入末端磷酸化核苷多磷酸的独特能力。此外,ϕ29 酶还被用于新兴的 DNA 测序技术,包括纳米孔和基于蛋白质晶体管的测序。DNA 聚合酶是测序技术的关键组成部分,而且将继续是关键组成部分。