Distinct accessory roles ofArabidopsisVEL proteins in Polycomb silencing

Author:

Franco-Echevarría Elsa,Nielsen MathiasORCID,Schulten Anna,Cheema Jitender,Morgan Tomos E.,Bienz Mariann,Dean Caroline

Abstract

Polycomb repressive complex 2 (PRC2) mediates epigenetic silencing of target genes in animals and plants. InArabidopsis, PRC2 is required for the cold-induced epigenetic silencing of theFLCfloral repressor locus to align flowering with spring. During this process, PRC2 relies on VEL accessory factors, including the constitutively expressed VRN5 and the cold-induced VIN3. The VEL proteins are physically associated with PRC2, but their individual functions remain unclear. Here, we show an intimate association between recombinant VRN5 and multiple components within a reconstituted PRC2, dependent on a compact conformation of VRN5 central domains. Key residues mediating this compact conformation are conserved among VRN5 orthologs across the plant kingdom. In contrast, VIN3 interacts with VAL1, a transcriptional repressor that binds directly toFLC. These associations differentially affect their role in H3K27me deposition: Both proteins are required for H3K27me3, but only VRN5 is necessary for H3K27me2. Although originally defined as vernalization regulators, VIN3 and VRN5 coassociate with many targets in theArabidopsisgenome that are modified with H3K27me3. Our work therefore reveals the distinct accessory roles for VEL proteins in conferring cold-induced silencing onFLC, with broad relevance for PRC2 targets generally.

Funder

European Research Council

Wellcome Trust

Biotechnology and Biological Sciences Research Council Institute Strategic

Royal Society Professorship

Medical Research Council

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. COOLAIR and PRC2 function in parallel to silence FLC during vernalization;Proceedings of the National Academy of Sciences;2024-01-18

2. Molecular epigenetic understanding of winter memory in Arabidopsis;Plant Physiology;2023-11-10

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