Literature DB >> 18644573

Processing of the tobacco etch virus 49K protease requires autoproteolysis.

J C Carrington1, W G Dougherty.   

Abstract

The final products encoded by the tobacco etch virus genome arise by proteolytic cleavage of a single large polyprotein precursor. Processing of the polyprotein at several sites requires the activity of a viral protease of 49,000 molecular weight (49K). We have examined the excision of the 49K protease from polyproteins translated from defined RNA transcripts. Polyproteins containing an intact 49K protein were efficiently processed after synthesis in a rabbit reticulocyte lysate to yield the 49K product. Introduction of a single amino acid substitution (cysteine to alanine) at the putative active site of the 49K protease abolished processing, indicating that the protease was excised from the polyprotein via an autocatalytic mechanism. Release of the 49K protease was determined to require autoproteolysis, since synthetic polyproteins which contained either or both 49K cleavage sites were processed poorly, if at all, in trans reactions. Protein microsequence analysis revealed that processing in vitro occurred between a glutamine-glycine dipeptide to generate the 49K amino terminus.

Entities:  

Year:  1987        PMID: 18644573     DOI: 10.1016/0042-6822(87)90006-7

Source DB:  PubMed          Journal:  Virology        ISSN: 0042-6822            Impact factor:   3.616


  13 in total

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Review 2.  Gene expression from viral RNA genomes.

Authors:  I G Maia; K Séron; A L Haenni; F Bernardi
Journal:  Plant Mol Biol       Date:  1996-10       Impact factor: 4.076

3.  In vitro characterization of a cassette to accumulate multiple proteins through synthesis of a self-processing polypeptide.

Authors:  J F Marcos; R N Beachy
Journal:  Plant Mol Biol       Date:  1994-02       Impact factor: 4.076

4.  Functions of the tobacco etch virus RNA polymerase (NIb): subcellular transport and protein-protein interaction with VPg/proteinase (NIa).

Authors:  X H Li; P Valdez; R E Olvera; J C Carrington
Journal:  J Virol       Date:  1997-02       Impact factor: 5.103

5.  Functional analysis of the interaction between VPg-proteinase (NIa) and RNA polymerase (NIb) of tobacco etch potyvirus, using conditional and suppressor mutants.

Authors:  J A Daròs; M C Schaad; J C Carrington
Journal:  J Virol       Date:  1999-10       Impact factor: 5.103

6.  Expression of symptoms, viral coat protein and silencing suppressor gene during mixed infection of a N-Wi strain of potato virus Y and an asymptomatic strain of potato virus X.

Authors:  D M J B Senanayake; B Mandal
Journal:  Virusdisease       Date:  2014-04-01

7.  Nucleotide sequence comparison of the 3'-terminal regions of severe, mild, and non-papaya infecting strains of papaya ringspot virus.

Authors:  C H Wang; S D Yeh
Journal:  Arch Virol       Date:  1992       Impact factor: 2.574

8.  Cloning, sequencing, and expression in Escherichia coli of the coat protein gene of a new potyvirus infection South African Passiflora.

Authors:  R J Brand; J T Burger; E P Rybicki
Journal:  Arch Virol       Date:  1993       Impact factor: 2.574

Review 9.  Multimodal protein constructs for herbivore insect control.

Authors:  Frank Sainsbury; Meriem Benchabane; Marie-Claire Goulet; Dominique Michaud
Journal:  Toxins (Basel)       Date:  2012-06-12       Impact factor: 4.546

10.  Characterization of the potyviral HC-pro autoproteolytic cleavage site.

Authors:  J C Carrington; K L Herndon
Journal:  Virology       Date:  1992-03       Impact factor: 3.616

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