A modular dCas9-based recruitment platform for combinatorial epigenome editing

Author:

Swain Tessa1ORCID,Pflueger Christian12ORCID,Freytag Saskia1ORCID,Poppe Daniel12ORCID,Pflueger Jahnvi1ORCID,Nguyen Trung Viet1ORCID,Li Ji Kevin1ORCID,Lister Ryan12ORCID

Affiliation:

1. Harry Perkins Institute of Medical Research , Nedlands , Western Australia  6009 , Australia

2. Australian Research Council Centre of Excellence in Plant Energy Biology, School of Molecular Sciences, The University of Western Australia , Crawley , Western Australia 6009 , Australia

Abstract

Abstract Targeted epigenome editing tools allow precise manipulation and investigation of genome modifications, however they often display high context dependency and variable efficacy between target genes and cell types. While systems that simultaneously recruit multiple distinct ‘effector’ chromatin regulators can improve efficacy, they generally lack control over effector composition and spatial organisation. To overcome this we have created a modular combinatorial epigenome editing platform, called SSSavi. This system is an interchangeable and reconfigurable docking platform fused to dCas9 that enables simultaneous recruitment of up to four different effectors, allowing precise control of effector composition and spatial ordering. We demonstrate the activity and specificity of the SSSavi system and, by testing it against existing multi-effector targeting systems, demonstrate its comparable efficacy. Furthermore, we demonstrate the importance of the spatial ordering of the recruited effectors for effective transcriptional regulation. Together, the SSSavi system enables exploration of combinatorial effector co-recruitment to enhance manipulation of chromatin contexts previously resistant to targeted editing.

Funder

National Health and Medical Research Council

NHMRC

Australian Research Council

Silvia and Charles Viertel Senior Medical Research Fellowship

Howard Hughes Medical Institute International Research Scholarship

Raine Medical Research Foundation

Margaret and Terry Orr Memorial

Publisher

Oxford University Press (OUP)

Subject

Genetics

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