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1.
Arch Biochem Biophys ; 466(1): 8-14, 2007 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-17692280

RESUMO

The severe acute respiratory syndrome coronavirus papain-like protease (SARS-CoV PLpro) carries out N-terminal processing of the viral replicase polyprotein, and also exhibits Lys48-linked polyubiquitin chain debranching and ISG15 precursor processing activities in vitro. Here, we used SDS-PAGE and fluorescence-based assays to demonstrate that ISG15 derivatives are the preferred substrates for the deubiquitinating activity of the PLpro. With k(cat)/K(M) of 602,000 M(-1)s(-1), PLpro hydrolyzes ISG15-AMC 30- and 60-fold more efficiently than Ub-AMC and Nedd8-AMC, respectively. Data obtained with truncated ISG15 and hybrid Ub/ISG15 substrates indicate that both the N- and C-terminal Ub-like domains of ISG15 contribute to this preference. The enzyme also displays a preference for debranching Lys48- over Lys63-linked polyubiquitin chains. Our results demonstrate that SARS-CoV PLpro can differentiate between ubiquitin-like modifiers sharing a common C-terminal sequence, and that the debranching activity of the PLpro is linkage type selective. The potential structural basis for the demonstrated specificity of SARS-CoV PLpro is discussed.


Assuntos
Cisteína Endopeptidases/química , Citocinas/química , Ubiquitina/química , Ubiquitinas/química , Proteínas Virais/química , Sítios de Ligação , Proteases 3C de Coronavírus , Ativação Enzimática , Ligação Proteica , Especificidade por Substrato
2.
J Virol ; 79(24): 15199-208, 2005 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-16306591

RESUMO

The severe acute respiratory syndrome coronavirus papain-like protease (SARS-CoV PLpro) is involved in the processing of the viral polyprotein and, thereby, contributes to the biogenesis of the virus replication complex. Structural bioinformatics has revealed a relationship for the SARS-CoV PLpro to herpesvirus-associated ubiquitin-specific protease (HAUSP), a ubiquitin-specific protease, indicating potential deubiquitinating activity in addition to its function in polyprotein processing (T. Sulea, H. A. Lindner, E. O. Purisima, and R. Menard, J. Virol. 79:4550-4551, 2005). In order to confirm this prediction, we overexpressed and purified SARS-CoV PLpro (amino acids [aa]1507 to 1858) from Escherichia coli. The purified enzyme hydrolyzed ubiquitin-7-amino-4-methylcoumarin (Ub-AMC), a general deubiquitinating enzyme substrate, with a catalytic efficiency of 13,100 M(-1)s(-1), 220-fold more efficiently than the small synthetic peptide substrate Z-LRGG-AMC, which incorporates the C-terminal four residues of ubiquitin. In addition, SARS-CoV PLpro was inhibited by the specific deubiquitinating enzyme inhibitor ubiquitin aldehyde, with an inhibition constant of 210 nM. The purified SARS-CoV PLpro disassembles branched polyubiquitin chains with lengths of two to seven (Ub2-7) or four (Ub4) units, which involves isopeptide bond cleavage. SARS-CoV PLpro processing activity was also detected against a protein fused to the C terminus of the ubiquitin-like modifier ISG15, both in vitro using the purified enzyme and in HeLa cells by coexpression with SARS-CoV PLpro (aa 1198 to 2009). These results clearly establish that SARS-CoV PLpro is a deubiquitinating enzyme, thereby confirming our earlier prediction. This unexpected activity for a coronavirus papain-like protease suggests a novel viral strategy to modulate the host cell ubiquitination machinery to its advantage.


Assuntos
Papaína/química , Peptídeo Hidrolases/metabolismo , Coronavírus Relacionado à Síndrome Respiratória Aguda Grave/enzimologia , Ubiquitina/metabolismo , Sequência de Aminoácidos , Domínio Catalítico , Células HeLa , Humanos , Dados de Sequência Molecular , Papaína/metabolismo , Peptídeo Hidrolases/genética , Coronavírus Relacionado à Síndrome Respiratória Aguda Grave/genética , Síndrome Respiratória Aguda Grave/virologia , Especificidade por Substrato
3.
J Med Chem ; 45(24): 5321-9, 2002 Nov 21.
Artigo em Inglês | MEDLINE | ID: mdl-12431059

RESUMO

A novel series of noncovalent inhibitors of cathepsin L have been designed to mimic the mode of autoinhibition of procathepsin L. Just like the propeptide, these peptide-based inhibitors have a reverse-binding mode relative to a substrate and span both the S' and S subsites of the enzyme active site. In contrast to previous studies in which even moderate truncation of the full-length propeptide led to rapid reduction in potency, these blocked tripeptide-sized inhibitors maintain nanomolar potency. Moreover, these short peptides show higher selectivity (up to 310-fold) for inhibiting cathepsin L over K versus only 2-fold selectivity of the 96-residue propeptide of cathepsin L. A 1.9 A X-ray crystallographic structure of the complex of cathepsin L with one of the inhibitors confirms the designed reverse-binding mode of the inhibitor as well as its noncovalent nature. Enzymatic analysis also shows the inhibitors to be resistant to hydrolysis at elevated concentrations of the enzyme. The mode of inhibition of these molecules provides a general strategy for inhibiting other cathepsins as well as other proteases.


Assuntos
Catepsinas/antagonistas & inibidores , Precursores Enzimáticos/antagonistas & inibidores , Oligopeptídeos/síntese química , Sítios de Ligação , Catepsina L , Catepsinas/química , Técnicas de Química Combinatória , Cristalografia por Raios X , Cisteína Endopeptidases , Desenho de Fármacos , Estabilidade de Medicamentos , Precursores Enzimáticos/química , Humanos , Hidrólise , Modelos Moleculares , Mimetismo Molecular , Oligopeptídeos/química , Ligação Proteica , Relação Estrutura-Atividade , Especificidade por Substrato
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