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October 29, 2021SHILAP Revista de lepidopterología202 citationsOpen Access

High-throughput and high-efficiency sample preparation for single-cell proteomics using a nested nanowell chip

JWJongmin Jacob WooSWSarah WilliamsLMLye Meng Markillie

Key Points

  • To develop a high-throughput, high-efficiency sample preparation platform using a nested nanowell chip for isobaric-labeling-based single-cell proteomics.
  • Designed a nested nanoPOTS (N2) chip reducing reaction volumes to <30 nL and scaling capacity to >240 single cells per chip.
  • Simplified tandem mass tag (TMT) pooling by applying a microliter droplet directly over the nested nanowells to combine samples.
  • Evaluated the platform by analyzing approximately 100 individual cells isolated from three distinct cell lines.
  • Robustly quantified ~1500 proteins per single cell and successfully identified membrane protein markers.
  • Demonstrated low protein abundance variations among single cells cultured under identical conditions, showing high proteomic stability.

Abstract

Abstract Global quantification of protein abundances in single cells could provide direct information on cellular phenotypes and complement transcriptomics measurements. However, single-cell proteomics is still immature and confronts many technical challenges. Herein we describe a nested nanoPOTS (N2) chip to improve protein recovery, operation robustness, and processing throughput for isobaric-labeling-based scProteomics workflow. The N2 chip reduces reaction volume to 240 single cells on a single microchip. The tandem mass tag (TMT) pooling step is simplified by adding a microliter droplet on the nested nanowells to combine labeled single-cell samples. In the analysis of ~100 individual cells from three different cell lines, we demonstrate that the N2 chip-based scProteomics platform can robustly quantify ~1500 proteins and reveal membrane protein markers. Our analyses also reveal low protein abundance variations, suggesting the single-cell proteome profiles are highly stable for the cells cultured under identical conditions.

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Cite This Study

Woo et al. (2021) studied this question.

synapsesocial.com/papers/69dd4e1a095593a74899b36chttps://doi.org/10.1038/s41467-021-26514-2
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