Literature DB >> 8676497

Characterization of the rubella virus nonstructural protease domain and its cleavage site.

J P Chen1, J H Strauss, E G Strauss, T K Frey.   

Abstract

The region of the rubella virus nonstructural open reading frame that contains the papain-like cysteine protease domain and its cleavage site was expressed with a Sindbis virus vector. Cys-1151 has previously been shown to be required for the activity of the protease (L. D. Marr, C.-Y. Wang, and T. K Frey, Virology 198:586-592, 1994). Here we show that His-1272 is also necessary for protease activity, consistent with the active site of the enzyme being composed of a catalytic dyad consisting of Cys-1151 and His-1272. By means of radiochemical amino acid sequencing, the site in the polyprotein cleaved by the nonstructural protease was found to follow Gly-1300 in the sequence Gly-1299-Gly-1300-Gly-1301. Mutagenesis studies demonstrated that change of Gly-1300 to alanine or valine abrogated cleavage. In contrast, Gly-1299 and Gly-1301 could be changed to alanine with retention of cleavage, but a change to valine abrogated cleavage. Coexpression of a construct that contains a cleavage site mutation (to serve as a protease) together with a construct that contains a protease mutation (to serve as a substrate) failed to reveal trans cleavage. Coexpression of wild-type constructs with protease-mutant constructs also failed to reveal trans cleavage, even after extended in vitro incubation following lysis. These results indicate that the protease functions only in cis, at least under the conditions tested.

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Year:  1996        PMID: 8676497      PMCID: PMC190407     

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  32 in total

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6.  Expression of the rubella virus structural proteins by an infectious Sindbis virus vector.

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8.  Sindbis vectors suppress secretion of subviral particles of Japanese encephalitis virus from mammalian cells infected with SIN-JEV recombinants.

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Review 10.  Molecular biology of rubella virus.

Authors:  T K Frey
Journal:  Adv Virus Res       Date:  1994       Impact factor: 9.937

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  30 in total

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4.  Mapping of genetic determinants of rubella virus associated with growth in joint tissue.

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5.  Short self-interacting N-terminal region of rubella virus capsid protein is essential for cooperative actions of capsid and nonstructural p150 proteins.

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6.  Heat Shock Protein 90 Ensures the Integrity of Rubella Virus p150 Protein and Supports Viral Replication.

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Review 7.  Molecular and Structural Insights into the Life Cycle of Rubella Virus.

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8.  Identification of a Ca2+-binding domain in the rubella virus nonstructural protease.

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9.  Calcium-dependent association of calmodulin with the rubella virus nonstructural protease domain.

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10.  Complementation of a deletion in the rubella virus p150 nonstructural protein by the viral capsid protein.

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