Mechanism for controlled assembly of transcriptional condensates by Aire
Yu-San Huoh, Qianxia Zhang, Ricarda Törner, Sylvan C. Baca, Haribabu Arthanari, Sun Hur

TL;DR
This paper reveals how the Aire protein forms transcriptional condensates on enhancers to regulate gene expression, with a balance between different domains controlling its assembly.
Contribution
The study identifies a multi-layered mechanism involving three Aire domains that regulate condensate assembly and transcriptional activity.
Findings
Aire condensates assemble on enhancers and stimulate local transcriptional activity.
The balance between PHD1 suppression and CTT stimulation is crucial for Aire condensate formation.
Aire connects distant genomic loci through condensate assembly.
Abstract
Transcriptional condensates play a crucial role in gene expression and regulation, yet their assembly mechanisms remain poorly understood. Here, we report a multi-layered mechanism for condensate assembly by autoimmune regulator (Aire), an essential transcriptional regulator that orchestrates gene expression reprogramming for central T cell tolerance. Aire condensates assemble on enhancers, stimulating local transcriptional activities and connecting disparate inter-chromosomal loci. This functional condensate formation hinges upon the coordination between three Aire domains: polymerization domain caspase activation recruitment domain (CARD), histone-binding domain (first plant homeodomain (PHD1)), and C-terminal tail (CTT). Specifically, CTT binds coactivators CBP/p300, recruiting Aire to CBP/p300-rich enhancers and promoting CARD-mediated condensate assembly. Conversely, PHD1 binds to…
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Taxonomy
TopicsAir Quality and Health Impacts · Noise Effects and Management · Environmental Justice and Health Disparities
