4.8 Article

Control of human adenovirus type 5 gene expression by cellular Daxx/ATRX chromatin-associated complexes

期刊

NUCLEIC ACIDS RESEARCH
卷 41, 期 6, 页码 3532-3550

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkt064

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资金

  1. Freie und Hansestadt Hamburg
  2. Bundesministerium fur Gesundheit (BMG)
  3. Deutsche Akademische Austauschdienst (DAAD)
  4. Bundesministerium fur Bildung und Forschung (BMBF)
  5. PROCOPE program
  6. Peter und Traudl Engelhorn Stiftung
  7. Erich und Gertrud Roggenbuck Stiftung
  8. Horst Muggenburg Stiftung
  9. Heinrich Pette Institute
  10. MRC [MC_U130169966] Funding Source: UKRI
  11. Medical Research Council [MC_U130169966] Funding Source: researchfish

向作者/读者索取更多资源

Death domain-associated protein (Daxx) cooperates with X-linked alpha-thalassaemia retardation syndrome protein (ATRX), a putative member of the sucrose non-fermentable 2 family of ATP-dependent chromatin-remodelling proteins, acting as the core ATPase subunit in this complex, whereas Daxx is the targeting factor, leading to histone deacetylase recruitment, H3.3 deposition and transcriptional repression of cellular promoters. Despite recent findings on the fundamental importance of chromatin modification in host-cell gene regulation, it remains unclear whether adenovirus type 5 (Ad5) transcription is regulated by cellular chromatin remodelling to allow efficient virus gene expression. Here, we focus on the repressive role of the Daxx/ATRX complex during Ad5 replication, which depends on intact protein-protein interaction, as negative regulation could be relieved with a Daxx mutant that is unable to interact with ATRX. To ensure efficient viral replication, Ad5 E1B-55K protein inhibits Daxx and targets ATRX for proteasomal degradation in cooperation with early region 4 open reading frame protein 6 and cellular components of a cullin-dependent E3-ubiquitin ligase. Our studies illustrate the importance and diversity of viral factors antagonizing Daxx/ATRX-mediated repression of viral gene expression and shed new light on the modulation of cellular chromatin remodelling factors by Ad5. We show for the first time that cellular Daxx/ATRX chromatin remodelling complexes play essential roles in Ad gene expression and illustrate the importance of early viral proteins to counteract cellular chromatin remodelling.

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