Automating UbiFast for High-throughput and Multiplexed Ubiquitin Enrichment.

计算机科学 细胞生物学 吞吐量 生物 泛素连接酶
作者
Keith Rivera,Meagan E. Olive,Erik J. Bergstrom,Alissa J. Nelson,Kimberly Lee,Shankha Satpathy,Steven A. Carr,Namrata D. Udeshi
出处
期刊:Molecular & Cellular Proteomics [Elsevier BV]
卷期号:20: 100154-100154 被引量:1
标识
DOI:10.1016/j.mcpro.2021.100154
摘要

Abstract Robust methods for deep-scale enrichment and site-specific identification of ubiquitylation sites are necessary for characterizing the myriad roles of protein ubiquitylation. To this end we previously developed UbiFast, a sensitive method for highly multiplexed ubiquitylation profiling where K-ɛ-GG peptides are enriched with anti-K-e-GG antibody and labeled on-antibody with isobaric labeling reagents for sample multiplexing. Here, we present robotic automation of the UbiFast method using a magnetic bead-conjugated K-e-GG antibody (mK-e-GG) and a magnetic particle processor. We report the identification of ∼20,000 ubiquitylation sites from a TMT10-plex with 500 μg input per sample processed in ∼2 hours. Automation of the UbiFast method greatly increased the number of identified and quantified ubiquitylation sites, improved reproducibility and significantly reduced processing time. The automated method also significantly reduced variability across process replicates compared to the manual method. The workflow enables processing of up to 96 samples in a single day making it suitable to study ubiquitylation in large sample sets. Here we demonstrate the applicability of the method to profile small amounts of tissue using breast cancer patient-derived xenograft (PDX) tissue samples.
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