4.5 Article

Cohesin promotes HSV-1 lytic transcription by facilitating the binding of RNA Pol II on viral genes

期刊

VIROLOGY JOURNAL
卷 18, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12985-021-01495-2

关键词

Cohesin; SMC1; Rad21; HSV-1; Transcription

类别

资金

  1. National Natural Science Foundation of China-Yunnan Joint Found (NSFC) [U1602226]
  2. National Natural Science Foundation of China (NSFC) [81672040, 31601157]
  3. Yunnan Applied Basic Research Project [2019FB017, 2016FB039]
  4. Ministry of Science and Technology of China (MOST) [2018YFC2000400, 2018YFE0203700]
  5. CAS Light of West China Program [xbzg-zdsys-201909]
  6. Thousand Foreign Talent scholarship from Yunnan province
  7. Technology Innovation Team of Kunming Medical University [CXTD201804]
  8. International Science and Technology Cooperation Project [2017IB011]
  9. NSF for Young Scientists of China (NSFC) [31802026]
  10. Chinese Academy of Sciences President's International Fellowship Initiative (PIFI) [2019VBA0045]

向作者/读者索取更多资源

The study found that cohesin subunits SMC1 and Rad21 are recruited to the lytic HSV-1 replication compartment, and knocking down these components leads to decreased viral transcription, protein expression, and maturation of replication compartments. Additionally, the knockdown reduces the overall occupancy level of RNA Pol II but increases its ser5 phosphorylation binding on viral genes, along with an increase in H3K27me3 modification on these genes.
Background Herpes Simplex Virus type I (HSV-1) is a large double-stranded DNA virus that enters productive infection in epithelial cells and reorganizes the host nucleus. Cohesin, a major constituent of interphase and mitotic chromosomes comprised of SMC1, SMC3, and SCC1 (Mcd1/Rad21), SCC3 (SA1/SA2), have diverse functions, including sister chromatid cohesion, DNA double-stranded breaks repair, and transcriptional control. Little is known about the role of cohesin in HSV-1 lytic infection. Methods We measured the effect on HSV-1 transcription, genome copy number, and viral titer by depleting cohesin components SMC1 or Rad21 using RNAi, followed by immunofluorescence, qPCR, and ChIP experiments to gain insight into cohesin's function in HSV-1 transcription and replication. Results Here, we report that cohesion subunits SMC1 and Rad21 are recruited to the lytic HSV-1 replication compartment. The knockdown results in decreased viral transcription, protein expression, and maturation of viral replication compartments. SMC1 and Rad21 knockdown leads to the reduced overall RNA pol II occupancy level but increased RNA pol II ser5 phosphorylation binding on viral genes. Consistent with this, the knockdown increased H3K27me3 modification on these genes. Conclusions These results suggest that cohesin facilitates HSV-1 lytic transcription by promoting RNA Pol II transcription activity and preventing chromatin's silencing on the viral genome.

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