Periphilin self-association underpins epigenetic silencing by the HUSH complex

Author:

Prigozhin Daniil M1,Douse Christopher H1ORCID,Farleigh Laura E12,Albecka Anna1,Tchasovnikarova Iva A2ORCID,Timms Richard T2ORCID,Oda Shun-ichiro12ORCID,Adolf Frank12,Freund Stefan M V3,Maslen Sarah4,Lehner Paul J2ORCID,Modis Yorgo12ORCID

Affiliation:

1. Molecular Immunity Unit, Department of Medicine, University of Cambridge, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK

2. Cambridge Institute of Therapeutic Immunology & Infectious Disease (CITIID), Department of Medicine, University of Cambridge, Cambridge CB2 0AW, UK

3. NMR Facility, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK

4. Biological Mass Spectrometry & Proteomics Laboratory, MRC Laboratory of Molecular Biology, Cambridge CB2 0QH, UK

Abstract

Abstract Transcription of integrated DNA from viruses or transposable elements is tightly regulated to prevent pathogenesis. The Human Silencing Hub (HUSH), composed of Periphilin, TASOR and MPP8, silences transcriptionally active viral and endogenous transgenes. HUSH recruits effectors that alter the epigenetic landscape and chromatin structure, but how HUSH recognizes target loci and represses their expression remains unclear. We identify the physicochemical properties of Periphilin necessary for HUSH assembly and silencing. A disordered N-terminal domain (NTD) and structured C-terminal domain are essential for silencing. A crystal structure of the Periphilin-TASOR minimal core complex shows Periphilin forms an α-helical homodimer, bound by a single TASOR molecule. The NTD forms insoluble aggregates through an arginine/tyrosine-rich sequence reminiscent of low-complexity regions from self-associating RNA-binding proteins. Residues required for TASOR binding and aggregation were required for HUSH-dependent silencing and genome-wide deposition of repressive mark H3K9me3. The NTD was functionally complemented by low-complexity regions from certain RNA-binding proteins and proteins that form condensates or fibrils. Our work suggests the associative properties of Periphilin promote HUSH aggregation at target loci.

Funder

Wellcome Trust

BBSRC

Swedish Society for Medical Research

Medical Research Council

Publisher

Oxford University Press (OUP)

Subject

Genetics

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