Ensemble of nucleic acid absolute quantitation modules for copy number variation detection and RNA profiling

Author:

Wu Lucia RuojiaORCID,Dai PengORCID,Wang Michael XiangjiangORCID,Chen Sherry Xi,Cohen Evan N.ORCID,Jayachandran Gitanjali,Zhang Jinny Xuemeng,Serrano Angela V.,Xie Nina Guanyi,Ueno Naoto T.ORCID,Reuben James M.,Barcenas Carlos H.,Zhang David Yu

Abstract

AbstractCurrent gold standard for absolute quantitation of a specific DNA sequence is droplet digital PCR (ddPCR), which has been applied to copy number variation (CNV) detection. However, the number of quantitation modules in ddPCR is limited by fluorescence channels, which thus limits the CNV sensitivity due to sampling error following Poisson distribution. Here we develop a PCR-based molecular barcoding NGS approach, quantitative amplicon sequencing (QASeq), for accurate absolute quantitation scalable to over 200 quantitation modules. By attaching barcodes to individual target molecules with high efficiency, 2-plex QASeq exhibits higher and more consistent conversion yield than ddPCR in absolute molecule count quantitation. Multiplexed QASeq improves CNV sensitivity allowing confident distinguishment of 2.05 ploidy from normal 2.00 ploidy. We apply multiplexed QASeq to serial longitudinal plasma cfDNA samples from patients with metastatic ERBB2+ (HER2+ ) breast cancer seeking association with tumor progression. We further show an RNA QASeq panel for targeted expression profiling.

Funder

Division of Cancer Prevention, National Cancer Institute

Cancer Prevention and Research Institute of Texas

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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