ArticleThe Journal of biological chemistry2025
Nuclear basket proteins Nup2 and Mlp1 drive heat shock-induced 3D genome restructuring downstream of transcriptional activation.
Article in The Journal of biological chemistry, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.
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3 citing papers in PubMed.
- Chaperone condensates buffer the heat shock response against pleiotropic inputs.bioRxiv : the preprint server for biology · 2026Article
- Mediator Tail Subunits Hierarchically Couple Transcriptional Condensates to Gene Activation and Genome Organization.bioRxiv : the preprint server for biology · 2026Article
- Transcriptional condensates and the nuclear pore complex regulate gene expression and 3D genome architecture in response to stress.Biochemical Society transactions · 2025Review
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Abstract
The nuclear pore complex (NPC), a multisubunit complex located within the nuclear envelope, regulates RNA export and the import and export of proteins. Here, we address the role of the NPC in driving thermal stress-induced 3D genome repositioning of heat shock-response (HSR) genes in budding yeast. We found that two nuclear basket proteins, Nup2 and Mlp1, although dispensable for NPC integrity, are required for driving HSR genes into coalesced chromatin clusters, consistent with their strong, heat shock-dependent recruitment to HSR gene regulatory and coding regions. HSR gene clustering occurs predominantly within the nucleoplasm and is independent of the essential scaffold-associated proteins Nup1 and Nup145. Notably, acute double depletion of Nup2 and Mlp1 has little effect on the formation of Heat shock factor 1-containing transcriptional condensates, Heat shock factor 1 and Pol II recruitment to HSR genes, or HSR mRNA abundance. Our results define a 3D genome restructuring role for nuclear basket proteins extrinsic to the NPC and downstream of HSR gene activation.
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