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1.
J Virol ; 89(9): 4942-50, 2015 May.
Artigo em Inglês | MEDLINE | ID: mdl-25694593

RESUMO

UNLABELLED: Feline infectious peritonitis and virulent, systemic calicivirus infection are caused by certain types of feline coronaviruses (FCoVs) and feline caliciviruses (FCVs), respectively, and are important infectious diseases with high fatality rates in members of the Felidae family. While FCoV and FCV belong to two distinct virus families, the Coronaviridae and the Caliciviridae, respectively, they share a dependence on viral 3C-like protease (3CLpro) for their replication. Since 3CLpro is functionally and structurally conserved among these viruses and essential for viral replication, 3CLpro is considered a potential target for the design of antiviral drugs with broad-spectrum activities against these distinct and highly important viral infections. However, small-molecule inhibitors against the 3CLpro enzymes of FCoV and FCV have not been previously identified. In this study, derivatives of peptidyl compounds targeting 3CLpro were synthesized and evaluated for their activities against FCoV and FCV. The structures of compounds that showed potent dual antiviral activities with a wide margin of safety were identified and are discussed. Furthermore, the in vivo efficacy of 3CLpro inhibitors was evaluated using a mouse model of coronavirus infection. Intraperitoneal administration of two 3CLpro inhibitors in mice infected with murine hepatitis virus A59, a hepatotropic coronavirus, resulted in significant reductions in virus titers and pathological lesions in the liver compared to the findings for the controls. These results suggest that the series of 3CLpro inhibitors described here may have the potential to be further developed as therapeutic agents against these important viruses in domestic and wild cats. This study provides important insights into the structure and function relationships of 3CLpro for the design of antiviral drugs with broader antiviral activities. IMPORTANCE: Feline infectious peritonitis virus (FIPV) is the leading cause of death in young cats, and virulent, systemic feline calicivirus (vs-FCV) causes a highly fatal disease in cats for which no preventive or therapeutic measure is available. The genomes of these distinct viruses, which belong to different virus families, encode a structurally and functionally conserved 3C-like protease (3CLpro) which is a potential target for broad-spectrum antiviral drug development. However, no studies have previously reported a structural platform for the design of antiviral drugs with activities against these viruses or on the efficacy of 3CLpro inhibitors against coronavirus infection in experimental animals. In this study, we explored the structure-activity relationships of the derivatives of 3CLpro inhibitors and identified inhibitors with potent dual activities against these viruses. In addition, the efficacy of the 3CLpro inhibitors was demonstrated in mice infected with a murine coronavirus. Overall, our study provides the first insight into a structural platform for anti-FIPV and anti-FCV drug development.


Assuntos
Antivirais/isolamento & purificação , Calicivirus Felino/enzimologia , Coronavirus Felino/enzimologia , Inibidores de Proteases/isolamento & purificação , Proteínas Virais/antagonistas & inibidores , Proteases Virais 3C , Animais , Antivirais/farmacologia , Antivirais/uso terapêutico , Calicivirus Felino/efeitos dos fármacos , Gatos , Infecções por Coronavirus/tratamento farmacológico , Infecções por Coronavirus/patologia , Coronavirus Felino/efeitos dos fármacos , Cisteína Endopeptidases , Modelos Animais de Doenças , Feminino , Fígado/patologia , Camundongos Endogâmicos BALB C , Inibidores de Proteases/farmacologia , Inibidores de Proteases/uso terapêutico , Resultado do Tratamento
2.
J Virol ; 81(13): 6798-806, 2007 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-17459935

RESUMO

A common feature of caliciviruses is the proteolytic processing of the viral polyprotein catalyzed by the viral 3C-like protease encoded in open reading frame 1 (ORF1). Here we report the identification and structural characterization of the protease domains and amino acid residues in sapovirus (SaV) and feline calicivirus (FCV). The in vitro expression and processing of a panel of truncated ORF1 polyproteins and corresponding mutant forms showed that the functional protease domain is 146 amino acids (aa) in SaV and 154 aa in FCV. Site-directed mutagenesis of the protease domains identified four amino acid residues essential to protease activities: H(31), E(52), C(116), and H(131) in SaV and H(39), E(60), C(122), and H(137) in FCV. A computer-assisted structural analysis showed that despite high levels of diversity in the primary structures of the protease domains in the family Caliciviridae, the configurations of the H, E, C, and H residues are highly conserved, with these residues positioned closely along the inner surface of the potential binding cleft for the substrate. These results strongly suggest that the H, E, C, and H residues are involved in the formation of a conserved catalytic surface of the SaV and FCV 3C-like proteases.


Assuntos
Modelos Moleculares , Peptídeo Hidrolases/química , Sapovirus/enzimologia , Proteínas da Matriz Viral/química , Sequência de Aminoácidos , Substituição de Aminoácidos , Animais , Calicivirus Felino/enzimologia , Calicivirus Felino/genética , Domínio Catalítico/genética , Gatos , Linhagem Celular , Humanos , Imageamento Tridimensional , Dados de Sequência Molecular , Mutagênese Sítio-Dirigida , Mutação de Sentido Incorreto , Fases de Leitura Aberta , Peptídeo Hidrolases/genética , Peptídeo Hidrolases/metabolismo , Ligação Proteica/genética , Estrutura Terciária de Proteína/genética , Sapovirus/genética , Especificidade por Substrato/genética , Proteínas da Matriz Viral/genética , Proteínas da Matriz Viral/metabolismo
3.
J Virol ; 76(14): 7060-72, 2002 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-12072506

RESUMO

Feline calicivirus (FCV) nonstructural proteins are translated as part of a large polyprotein that undergoes autocatalytic processing by the virus-encoded 3C-like proteinase. In this study, we mapped three new cleavage sites (E(46)/A(47), E(331)/D(332), and E(685)/N(686)) recognized by the virus proteinase in the N-terminal part of the open reading frame 1 (ORF1) polyprotein to complete the processing map. Taken together with two sites we identified previously (E(960)/A(961) and E(1071)/S(1072)), the FCV ORF1 polyprotein contains five cleavage sites that define the borders of six proteins with calculated molecular masses of 5.6, 32, 38.9, 30.1, 12.7, and 75.7 kDa, which we designated p5.6, p32, p39 (NTPase), p30, p13 (VPg), and p76 (Pro-Pol), respectively. Mutagenesis of the E to A in each of these cleavage sites in an infectious FCV cDNA clone was lethal for the virus, indicating that these cleavages are essential in a productive virus infection. Mutagenesis of two cleavage sites (E(1345)/T(1346) and E(1419)/G(1420)) within the 75.7-kDa Pro-Pol protein previously mapped in bacterial expression studies was not lethal.


Assuntos
Calicivirus Felino/metabolismo , Poliproteínas/química , Poliproteínas/metabolismo , Proteínas não Estruturais Virais/química , Proteínas não Estruturais Virais/metabolismo , Proteases Virais 3C , Sequência de Aminoácidos , Animais , Calicivirus Felino/enzimologia , Calicivirus Felino/crescimento & desenvolvimento , Gatos , Linhagem Celular , Cisteína Endopeptidases/metabolismo , Dados de Sequência Molecular , Mutagênese Sítio-Dirigida , Poliproteínas/genética , Biossíntese de Proteínas , Proteínas/genética , Transcrição Gênica , Proteínas não Estruturais Virais/genética , Proteínas Virais/metabolismo
4.
J Virol ; 75(3): 1211-9, 2001 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-11152494

RESUMO

The objective of this study was to identify the active form of the feline calicivirus (FCV) RNA-dependent RNA polymerase (RdRP). Multiple active forms of the FCV RdRP were identified. The most active enzyme was the full-length proteinase-polymerase (Pro-Pol) precursor protein, corresponding to amino acids 1072 to 1763 of the FCV polyprotein encoded by open reading frame 1 of the genome. Deletion of 163 amino acids from the amino terminus of Pro-Pol (the Val-1235 amino terminus) caused a threefold reduction in polymerase activity. Deletion of an additional one (the Thr-1236 amino terminus) or two (the Ala-1237 amino terminus) amino acids produced derivatives that were 7- and 175-fold, respectively, less active than Pro-Pol. FCV proteinase-dependent processing of Pro-Pol in the interdomain region preceding Val-1235 was not observed in the presence of a catalytically active proteinase; however, processing within the polymerase domain was observed. Inactivation of proteinase activity by changing the catalytic cysteine-1193 to glycine permitted the production and purification of intact Pro-Pol. Biochemical analysis of Pro-Pol showed that this enzyme has properties expected of a replicative polymerase, suggesting that Pro-Pol is an active form of the FCV RdRP.


Assuntos
Calicivirus Felino/enzimologia , Endopeptidases/metabolismo , Precursores Enzimáticos/metabolismo , RNA Polimerase Dependente de RNA/metabolismo , Sequência de Aminoácidos , Sequência de Bases , Endopeptidases/química , Endopeptidases/isolamento & purificação , Precursores Enzimáticos/química , Precursores Enzimáticos/isolamento & purificação , Manganês/farmacologia , Dados de Sequência Molecular , RNA Viral/biossíntese
5.
J Virol ; 73(8): 6626-33, 1999 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-10400760

RESUMO

Expression of the region of the feline calicivirus (FCV) ORF1 encoded by nucleotides 3233 to 4054 in an in vitro rabbit reticulocyte system resulted in synthesis of an active proteinase that specifically processes the viral nonstructural polyprotein. Site-directed mutagenesis of the cysteine (Cys1193) residue in the putative active site of the proteinase abolished autocatalytic cleavage as well as cleavage of the viral capsid precursor, suggesting that this "3C-like" proteinase plays an important role in proteolytic processing during viral replication. Expression of the region encoding the C-terminal portion of the FCV ORF1 (amino acids 942 to 1761) in bacteria allowed direct N-terminal sequence analysis of the virus-specific polypeptides produced in this system. The results of these analyses indicate that the proteinase cleaves at amino acid residues E960-A961, E1071-S1072, E1345-T1346, and E1419-G1420; however, the cleavage efficiency is varied. The E1071-S1072 cleavage site defined the N terminus of a 692-amino-acid protein that contains sequences with similarity to the picornavirus 3C proteinase and 3D polymerase domains. Immunoprecipitation of radiolabeled proteins from FCV-infected feline kidney cells with serum raised against the FCV ORF1 C-terminal region showed that this "3CD-like" proteinase-polymerase precursor protein is apparently stable and accumulates in cells during infection.


Assuntos
Calicivirus Felino/enzimologia , Cisteína Endopeptidases/genética , RNA Polimerases Dirigidas por DNA/metabolismo , Precursores de Proteínas/metabolismo , Processamento de Proteína Pós-Traducional , Proteínas não Estruturais Virais/metabolismo , Proteínas Virais/genética , Proteases Virais 3C , Sequência de Aminoácidos , Animais , Sítios de Ligação , Calicivirus Felino/genética , Catálise , Gatos , Linhagem Celular , Mapeamento Cromossômico , Cisteína Endopeptidases/química , Cisteína Endopeptidases/metabolismo , Humanos , Dados de Sequência Molecular , Mutagênese , Fases de Leitura Aberta , Proteínas/metabolismo , Análise de Sequência , Homologia de Sequência de Aminoácidos , Proteínas Virais/metabolismo
6.
J Virol ; 72(4): 3051-9, 1998 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-9525628

RESUMO

Feline calicivirus (FCV), a member of the Caliciviridae, produces its major structural protein as a precursor polyprotein from a subgenomic-sized mRNA. In this study, we show that the proteinase responsible for processing this precursor into the mature capsid protein is encoded by the viral genome at the 3'-terminal portion of open reading frame 1 (ORF1). Protein expression studies of either the entire or partial ORF1 indicate that the proteinase is active when expressed either in in vitro translation or in bacterial cells. Site-directed mutagenesis was used to characterize the proteinase Glu-Ala cleavage site in the capsid precursor, utilizing an in vitro cleavage assay in which mutant precursor proteins translated from cDNA clones were used as substrates for trans cleavage by the proteinase. In general, amino acid substitutions in the P1 position (Glu) of the cleavage site were less well tolerated by the proteinase than those in the P1' position (Ala). The precursor cleavage site mutations were introduced into an infectious cDNA clone of the FCV genome, and transfection of RNA derived from these clones into feline kidney cells showed that efficient cleavage of the capsid precursor by the virus-encoded proteinase is a critical determinant in the growth of the virus.


Assuntos
Calicivirus Felino/enzimologia , Capsídeo/metabolismo , Endopeptidases/metabolismo , Animais , Sequência de Bases , Calicivirus Felino/genética , Gatos , Linhagem Celular , Mapeamento Cromossômico , DNA Viral , Endopeptidases/genética , Expressão Gênica , Dados de Sequência Molecular , Mutagênese Sítio-Dirigida , Biossíntese de Proteínas , Precursores de Proteínas/metabolismo , Transcrição Gênica
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