SARS-CoV-2 Restructures the Host Chromatin Architecture
Wang, R.; Lee, J.-H.; Xiong, F.; Kim, J.; Al Hasani, L.; Yuan, X.; Shivshankar, P.; Krakowiak, J.; Qi, C.; Wang, Y.; Eltzschig, H. K.; Li, W.
Show abstract
SARS-CoV-2 has made >190-million infections worldwide, thus it is pivotal to understand the viral impacts on host cells. Many viruses can significantly alter host chromatin1, but such roles of SARS-CoV-2 are largely unknown. Here, we characterized the three-dimensional (3D) genome architecture and epigenome landscapes in human cells after SARS-CoV-2 infection, revealing remarkable restructuring of host chromatin architecture. High-resolution Hi-C 3.0 uncovered widespread A compartmental weakening and A-B mixing, together with a global reduction of intra-TAD chromatin contacts. The cohesin complex, a central organizer of the 3D genome, was significantly depleted from intra-TAD regions, supporting that SARS-CoV-2 disrupts cohesin loop extrusion. Calibrated ChIP-Seq verified chromatin restructuring by SARS-CoV-2 that is particularly manifested by a pervasive reduction of euchromatin modifications. Built on the rewired 3D genome/epigenome maps, a modified activity-by-contact model2 highlights the transcriptional weakening of antiviral interferon response genes or virus sensors (e.g., DDX58) incurred by SARS-CoV-2. In contrast, pro-inflammatory genes (e.g. IL-6) high in severe infections were uniquely regulated by augmented H3K4me3 at their promoters. These findings illustrate how SARS-CoV-2 rewires host chromatin architecture to confer immunological gene deregulation, laying a foundation to characterize the long-term epigenomic impacts of this virus.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- PAX3-FOXO1 coordinates enhancer architecture, eRNA transcription, andRNA polymerase pause release at select gene targets 99%
- Circadian PERIOD proteins regulate TC-DSB repair through anchoring to the nuclear envelope 98%
- Mechanism of homology search expansion during recombinational DNA break repair 96%
Similar papers in this journal
- Enhancer adoption by an LTR retrotransposongenerates viral-like particles causingdevelopmental limb phenotypes 98%
- Active repression of cell fate plasticity by PROX1 safeguards hepatocyte identity and prevents liver tumourigenesis 98%
- Orphan CpG islands boost the regulatory activity of poisedenhancers and dictate the responsiveness of their target genes 98%