A universal method for the rapid isolation of all known classes of functional silencing small RNAs

Author:

Grentzinger Thomas1ORCID,Oberlin Stefan1ORCID,Schott Gregory1,Handler Dominik2,Svozil Julia1,Barragan-Borrero Veronica1,Humbert Adeline3,Duharcourt Sandra3,Brennecke Julius2,Voinnet Olivier1

Affiliation:

1. Department of Biology, Swiss Federal Institute of Technology (ETH), Zürich, 8092, Switzerland

2. Institute of Molecular Biotechnology of the Austrian Academy of Sciences (IMBA), Vienna, 1030, Austria

3. Institut Jacques Monod, Université de Paris, CNRS, Paris, 75013, France

Abstract

Abstract Diverse classes of silencing small (s)RNAs operate via ARGONAUTE-family proteins within RNA-induced-silencing-complexes (RISCs). Here, we have streamlined various embodiments of a Q-sepharose-based RISC-purification method that relies on conserved biochemical properties of all ARGONAUTEs. We show, in multiple benchmarking assays, that the resulting 15-min benchtop extraction procedure allows simultaneous purification of all known classes of RISC-associated sRNAs without prior knowledge of the samples-intrinsic ARGONAUTE repertoires. Optimized under a user-friendly format, the method – coined ‘TraPR’ for Trans-kingdom, rapid, affordable Purification of RISCs – operates irrespectively of the organism, tissue, cell type or bio-fluid of interest, and scales to minute amounts of input material. The method is highly suited for direct profiling of silencing sRNAs, with TraPR-generated sequencing libraries outperforming those obtained via gold-standard procedures that require immunoprecipitations and/or lengthy polyacrylamide gel-selection. TraPR considerably improves the quality and consistency of silencing sRNA sample preparation including from notoriously difficult-to-handle tissues/bio-fluids such as starchy storage roots or mammalian plasma, and regardless of RNA contaminants or RNA degradation status of samples.

Funder

ETH

CNRS

Fondation de la Recherche Médicale

Agence Nationale de la Recherche

Publisher

Oxford University Press (OUP)

Subject

Genetics

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