Cargando…

Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins

A method was developed to assess the functional significance of a sequence motif in yeast Upf3p, a protein required for nonsense-mediated mRNA decay (NMD). The motif lies at the edge of the Upf3p-Upf2p interaction domain, but at the same time resembles the canonical leucine-rich nuclear export seque...

Descripción completa

Detalles Bibliográficos
Autores principales: Shirley, Renee L., Richards, M. Rachel, Culbertson, Michael R.
Formato: Texto
Lenguaje:English
Publicado: Biological Procedures Online 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC521343/
https://www.ncbi.nlm.nih.gov/pubmed/15472721
http://dx.doi.org/10.1251/bpo91
_version_ 1782121837239468032
author Shirley, Renee L.
Richards, M. Rachel
Culbertson, Michael R.
author_facet Shirley, Renee L.
Richards, M. Rachel
Culbertson, Michael R.
author_sort Shirley, Renee L.
collection PubMed
description A method was developed to assess the functional significance of a sequence motif in yeast Upf3p, a protein required for nonsense-mediated mRNA decay (NMD). The motif lies at the edge of the Upf3p-Upf2p interaction domain, but at the same time resembles the canonical leucine-rich nuclear export sequence (NES) found in proteins that bind Crm1p exportin. To test the function of the putative NES, site-directed mutations that cause substitutions of conserved NES-A residues were first selected to identify hypermorphic alleles. Next, a portable Crm1p-binding NES from HIV-1 Rev protein that functions in yeast was fused en masse to the C-terminus of variant Upf3 proteins using loxP sites recognized by bacterial cre-recombinase. Finally, variant Upf3-Rev proteins that were functional in NMD were selected and examined for the types of amino acid substitutions present in NES-A. The mutational analysis revealed that amino acid substitutions in the Upf3 NES impair both nuclear export and the Upf2p-Upf3p interaction, both of which are required for Upf3p to function in NMD. The method described in this report could be modified for the genetic analysis of a variety of portable protein domains.
format Text
id pubmed-521343
institution National Center for Biotechnology Information
language English
publishDate 2004
publisher Biological Procedures Online
record_format MEDLINE/PubMed
spelling pubmed-5213432004-10-06 Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins Shirley, Renee L. Richards, M. Rachel Culbertson, Michael R. Biol Proced Online Research Article A method was developed to assess the functional significance of a sequence motif in yeast Upf3p, a protein required for nonsense-mediated mRNA decay (NMD). The motif lies at the edge of the Upf3p-Upf2p interaction domain, but at the same time resembles the canonical leucine-rich nuclear export sequence (NES) found in proteins that bind Crm1p exportin. To test the function of the putative NES, site-directed mutations that cause substitutions of conserved NES-A residues were first selected to identify hypermorphic alleles. Next, a portable Crm1p-binding NES from HIV-1 Rev protein that functions in yeast was fused en masse to the C-terminus of variant Upf3 proteins using loxP sites recognized by bacterial cre-recombinase. Finally, variant Upf3-Rev proteins that were functional in NMD were selected and examined for the types of amino acid substitutions present in NES-A. The mutational analysis revealed that amino acid substitutions in the Upf3 NES impair both nuclear export and the Upf2p-Upf3p interaction, both of which are required for Upf3p to function in NMD. The method described in this report could be modified for the genetic analysis of a variety of portable protein domains. Biological Procedures Online 2004-10-01 /pmc/articles/PMC521343/ /pubmed/15472721 http://dx.doi.org/10.1251/bpo91 Text en Copyright © October 10, 2004, RL Shirley et al. This paper is Open Access and is published in Biological Procedures Online under license from the authors. Copying, printing, redistribution and storage permitted.
spellingShingle Research Article
Shirley, Renee L.
Richards, M. Rachel
Culbertson, Michael R.
Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title_full Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title_fullStr Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title_full_unstemmed Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title_short Using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
title_sort using the cre-lox recombination system to assess functional impairment caused by amino acid substitutions in yeast proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC521343/
https://www.ncbi.nlm.nih.gov/pubmed/15472721
http://dx.doi.org/10.1251/bpo91
work_keys_str_mv AT shirleyreneel usingthecreloxrecombinationsystemtoassessfunctionalimpairmentcausedbyaminoacidsubstitutionsinyeastproteins
AT richardsmrachel usingthecreloxrecombinationsystemtoassessfunctionalimpairmentcausedbyaminoacidsubstitutionsinyeastproteins
AT culbertsonmichaelr usingthecreloxrecombinationsystemtoassessfunctionalimpairmentcausedbyaminoacidsubstitutionsinyeastproteins