AI Article Synopsis

  • ChIP-seq is a technique for studying how proteins interact with DNA across the genome, and a newer method called RELACS improves the process using chromatin barcoding for high-throughput data generation.
  • The manual version of RELACS faces challenges due to human limitations in data collection and analysis.
  • To address this, AutoRELACS was developed, automating the RELACS process with the Biomek i7 workstation and pairing it with snakePipes for streamlined data handling, resulting in high-quality ChIP-seq data even from small samples.

Article Abstract

Chromatin immunoprecipitation followed by sequencing (ChIP-seq) is a method used to profile protein-DNA interactions genome-wide. Restriction Enzyme-based Labeling of Chromatin in Situ (RELACS) is a recently developed ChIP-seq protocol that deploys a chromatin barcoding strategy to enable standardized and high-throughput generation of ChIP-seq data. The manual implementation of RELACS is constrained by human processivity in both data generation and data analysis. To overcome these limitations, we have developed AutoRELACS, an automated implementation of the RELACS protocol using the liquid handler Biomek i7 workstation. We match the unprecedented processivity in data generation allowed by AutoRELACS with the automated computation pipelines offered by snakePipes. In doing so, we build a continuous workflow that streamlines epigenetic profiling, from sample collection to biological interpretation. Here, we show that AutoRELACS successfully automates chromatin barcode integration, and is able to generate high-quality ChIP-seq data comparable with the standards of the manual protocol, also for limited amounts of biological samples.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7381599PMC
http://dx.doi.org/10.1038/s41598-020-69443-8DOI Listing

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