Lamin A/C maintains genome topology and regulates transcriptional programs essential for virus-driven B cell activation.
Caruso, L. B.; Maestri, D.; Kossenkov, A.; Goldman, A.; Cassel, J.; Soldan, S. S.; Lieberman, P. M.; Tempera, I.
Show abstract
Lamin A/C is a crucial structural component of the nuclear lamina that influences chromatin organization and gene regulation. In this study, we demonstrate that lamin A/C is vital for maintaining higher-order genome organization and transcriptional programs that support EBV-driven B-cell activation. Loss of lamin A/C in a B-lymphoblastoid cell line caused significant three-dimensional reorganization of the genome, evidenced by the loss of long-range chromatin loops, an increase in short-range contacts, and redistribution of H3K9me2- marked heterochromatin. These structural disruptions were linked to widespread changes in gene expression affecting metabolic, signaling, and differentiation pathways. Mechanistically, lamin A/C influences the nuclear positioning and transcription of CTCF-bound loci by preventing their relocation to the periphery and their association with lamin B1. Blocking H3K9me2 deposition mimicked the transcriptional effects of lamin A/C depletion and revealed increased sensitivity to PI3K inhibitors. Overall, our results identify lamin A/C as a key organizer of genome structure and epigenetic regulation in EBV-infected B cells, uncovering a lamin-dependent pathway that connects nuclear architecture, metabolism, and viral disease processes.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Monocarboxylate transporter antagonism reveals metabolic vulnerabilities of viral-driven lymphomas 96%
- D-cysteine is an endogenous regulator of neural progenitor cell dynamics in the mammalian brain 95%
- Nuclear lamin isoforms differentially contribute to LINC complex-dependent nucleocytoskeletal coupling and whole cell mechanics 95%
Similar papers in this journal
Similar papers in this journal
- Hypoxia increases the methylated histones to prevent histone clipping and redistribution of heterochromatin during Raf-induced senescence 95%
- HIV Vpr activates a nucleolar-specific ATR pathway to degrade the nucleolar stress sensor CCDC137 95%
- Oncogenic YAP mediates changes in chromatin accessibility and activity that drive cell cycle gene expression and cell migration 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.