Author: Saura, Marta; Zaragoza, Carlos; McMillan, Audrey; Quick, Richard A; Hohenadl, Christine; Lowenstein, John M; Lowenstein, Charles J
                    Title: An Antiviral Mechanism of Nitric Oxide: Inhibition of a Viral Protease  Cord-id: le034mvq  Document date: 1999_1_1
                    ID: le034mvq
                    
                    Snippet: Although nitric oxide (NO) kills or inhibits the replication of a variety of intracellular pathogens, the antimicrobial mechanisms of NO are unknown. Here, we identify a viral protease as a target of NO. The life cycle of many viruses depends upon viral proteases that cleave viral polyproteins into individual polypeptides. NO inactivates the Coxsackievirus protease 3C, an enzyme necessary for the replication of Coxsackievirus. NO S-nitrosylates the cysteine residue in the active site of protease
                    
                    
                    
                     
                    
                    
                    
                    
                        
                            
                                Document: Although nitric oxide (NO) kills or inhibits the replication of a variety of intracellular pathogens, the antimicrobial mechanisms of NO are unknown. Here, we identify a viral protease as a target of NO. The life cycle of many viruses depends upon viral proteases that cleave viral polyproteins into individual polypeptides. NO inactivates the Coxsackievirus protease 3C, an enzyme necessary for the replication of Coxsackievirus. NO S-nitrosylates the cysteine residue in the active site of protease 3C, inhibiting protease activity and interrupting the viral life cycle. Substituting a serine residue for the active site cysteine renders protease 3C resistant to NO inhibition. Since cysteine proteases are critical for virulence or replication of many viruses, bacteria, and parasites, S-nitrosylation of pathogen cysteine proteases may be a general mechanism of antimicrobial host defenses.
 
  Search related documents: 
                                Co phrase  search for related documents- active site and luciferase activity monitor: 1
  - active site and luciferase cleavage: 1
  - activity inhibit and luciferase activity: 1, 2, 3
  - luciferase activity and luminometer assay: 1, 2, 3, 4, 5
  
 
                                Co phrase  search for related documents, hyperlinks ordered by date