寡核苷酸
桑格测序
核糖核酸酶P
序列(生物学)
计算生物学
化学
分子生物学
核糖核酸酶
DNA测序
DNA
核糖核酸
生物化学
生物
基因
作者
Tao Jiang,Ningxi Yu,Jaeah Kim,John-Ross Murgo,Mildred Kissai,Kanchana Ravichandran,Edward J. Miracco,Vladimir Presnyak,Serenus Hua
标识
DOI:10.1021/acs.analchem.9b01664
摘要
Characterization of mRNA sequences is a critical aspect of mRNA drug development and regulatory filing. Herein, we developed a novel bottom-up oligonucleotide sequence mapping workflow combining multiple endonucleases that cleave mRNA at different frequencies. RNase T1, colicin E5, and mazF were applied in parallel to provide complementary sequence coverage for large mRNAs. Combined use of multiple endonucleases resulted in significantly improved sequence coverage: greater than 70% sequence coverage was achieved on mRNAs near 3000 nucleotides long. Oligonucleotide mapping simulations with large human RNA databases demonstrate that the proposed workflow can positively identify a single correct sequence from hundreds of similarly sized sequences. In addition, the workflow is sensitive and specific enough to detect minor sequence impurities such as single nucleotide polymorphisms (SNPs) with a sensitivity of less than 1%. LC-MS/MS-based oligonucleotide sequence mapping can serve as an orthogonal sequence characterization method to techniques such as Sanger sequencing or next-generation sequencing (NGS), providing high-throughput sequence identification and sensitive impurity detection.
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