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  1. The QP509L and Q706L superfamily II RNA helicases of African swine fever virus are required for viral replication, having non-redundant activities
  2. DNA-Binding Properties of African Swine Fever Virus pA104R, a Histone-Like Protein Involved in Viral Replication and Transcription
  3. In vitro inhibition of African swine fever virus-topoisomerase II disrupts viral replication
  4. HER2-positive feline mammary carcinoma
  5. Molecular based subtyping of feline mammary carcinomas and clinicopathological characterization
  6. Functional characterization and inhibition of the type II DNA topoisomerase coded by African swine fever virus
  7. Serum HER2 levels are increased in cats with mammary carcinomas and predict tissue HER2 status
  8. Early intranuclear replication of African swine fever virus genome modifies the landscape of the host cell nucleus
  9. Alterations of Nuclear Architecture and Epigenetic Signatures during African Swine Fever Virus Infection
  10. Ki-67 as a Prognostic Factor in Feline Mammary Carcinoma
  11. African swine fever virus ORF P1192R codes for a functional type II DNA topoisomerase
  12. Immunophenotyping of primary and metastatic lesions in feline mammary tumors - are they equal?
  13. Localization of ASFV DNA replication and morphological study of subnuclear compartments during viral infection
  14. In vitro antiviral activity of fluoroquinolones against African swine fever virus
  15. Host DNA damage response facilitates African swine fever virus infection
  16. Feline HER2 Protein Expression Levels and Gene Status in Feline Mammary Carcinoma: Optimization of Immunohistochemistry (IHC) andIn SituHybridization (ISH) Techniques
  17. Conjugation of Human Topoisomerase 2  with Small Ubiquitin-like Modifiers 2/3 in Response to Topoisomerase Inhibitors: Cell Cycle Stage and Chromosome Domain Specificity
  18. The Williams syndrome transcription factor interacts with PCNA to target chromatin remodelling by ISWI to replication foci