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1. Role of Severe Acute Respiratory Syndrome Coronavirus Viroporins E, 3a, and 8a in Replication and Pathogenesis.

2. Identification of the Mechanisms Causing Reversion to Virulence in an Attenuated SARS-CoV for the Design of a Genetically Stable Vaccine.

3. Severe acute respiratory syndrome coronaviruses with mutations in the E protein are attenuated and promising vaccine candidates.

4. Coronavirus virulence genes with main focus on SARS-CoV envelope gene.

5. The PDZ-binding motif of severe acute respiratory syndrome coronavirus envelope protein is a determinant of viral pathogenesis.

6. Severe acute respiratory syndrome coronavirus envelope protein ion channel activity promotes virus fitness and pathogenesis.

7. Inhibition of NF-κB-mediated inflammation in severe acute respiratory syndrome coronavirus-infected mice increases survival.

8. The replication of a mouse adapted SARS-CoV in a mouse cell line stably expressing the murine SARS-CoV receptor mACE2 efficiently induces the expression of proinflammatory cytokines.

9. Analysis of SARS-CoV E protein ion channel activity by tuning the protein and lipid charge.

10. Complete protection against severe acute respiratory syndrome coronavirus-mediated lethal respiratory disease in aged mice by immunization with a mouse-adapted virus lacking E protein.

11. Combined action of type I and type III interferon restricts initial replication of severe acute respiratory syndrome coronavirus in the lung but fails to inhibit systemic virus spread.

12. Coronavirus E protein forms ion channels with functionally and structurally-involved membrane lipids.

13. Severe acute respiratory syndrome coronavirus nsp1 facilitates efficient propagation in cells through a specific translational shutoff of host mRNA.

14. Severe acute respiratory syndrome coronavirus accessory proteins 6 and 9b interact in vivo.

15. Severe acute respiratory syndrome coronavirus replication inhibitor that interferes with the nucleic acid unwinding of the viral helicase.

16. Severe acute respiratory syndrome coronavirus envelope protein regulates cell stress response and apoptosis.

17. Subcellular location and topology of severe acute respiratory syndrome coronavirus envelope protein.

18. The envelope protein of severe acute respiratory syndrome coronavirus interacts with the non-structural protein 3 and is ubiquitinated.

19. Immunization with an attenuated severe acute respiratory syndrome coronavirus deleted in E protein protects against lethal respiratory disease.

20. Genome-wide analysis of protein-protein interactions and involvement of viral proteins in SARS-CoV replication.

21. A live attenuated severe acute respiratory syndrome coronavirus is immunogenic and efficacious in golden Syrian hamsters.

22. Pathogenicity of severe acute respiratory coronavirus deletion mutants in hACE-2 transgenic mice.

23. Vaccines to prevent severe acute respiratory syndrome coronavirus-induced disease.

24. A severe acute respiratory syndrome coronavirus that lacks the E gene is attenuated in vitro and in vivo.

25. Construction of a severe acute respiratory syndrome coronavirus infectious cDNA clone and a replicon to study coronavirus RNA synthesis.

26. Identification of essential genes as a strategy to select a SARS candidate vaccine using a SARS-CoV infectious cDNA.

27. Subcellular localization of the severe acute respiratory syndrome coronavirus nucleocapsid protein.

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