Cargando…

A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.

We describe the use of a Xenopus laevis egg extract for the in vitro translation and post translational modification of membrane and secretory proteins. This extract is capable of the translation and segregation into membranes of microgram per millilitre levels of protein from added mRNAs. Signal se...

Descripción completa

Detalles Bibliográficos
Autores principales: Matthews, G, Colman, A
Formato: Texto
Lenguaje:English
Publicado: 1991
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC329185/
https://www.ncbi.nlm.nih.gov/pubmed/1754376
_version_ 1782121190447382528
author Matthews, G
Colman, A
author_facet Matthews, G
Colman, A
author_sort Matthews, G
collection PubMed
description We describe the use of a Xenopus laevis egg extract for the in vitro translation and post translational modification of membrane and secretory proteins. This extract is capable of the translation and segregation into membranes of microgram per millilitre levels of protein from added mRNAs. Signal sequences of segregated proteins are efficiently cleaved and appropriate N-linked glycosylation patterns are produced. The extract also supports the quantitative assembly of murine immunoglobulin heavy and light chains into tetramers, and two events which take place beyond the endoplasmic reticulum, mannose 6 phosphorylation of murine cathepsin D and O-linked glycosylation of coronavirus E1 protein, also occur, but at reduced efficiency. The stability of the membranes allows protease protection studies and quantitative centrifugal fractionation of segregated and unsegregated proteins to be performed. Conditions for the use of stored extract have also been determined.
format Text
id pubmed-329185
institution National Center for Biotechnology Information
language English
publishDate 1991
record_format MEDLINE/PubMed
spelling pubmed-3291852004-02-10 A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs. Matthews, G Colman, A Nucleic Acids Res We describe the use of a Xenopus laevis egg extract for the in vitro translation and post translational modification of membrane and secretory proteins. This extract is capable of the translation and segregation into membranes of microgram per millilitre levels of protein from added mRNAs. Signal sequences of segregated proteins are efficiently cleaved and appropriate N-linked glycosylation patterns are produced. The extract also supports the quantitative assembly of murine immunoglobulin heavy and light chains into tetramers, and two events which take place beyond the endoplasmic reticulum, mannose 6 phosphorylation of murine cathepsin D and O-linked glycosylation of coronavirus E1 protein, also occur, but at reduced efficiency. The stability of the membranes allows protease protection studies and quantitative centrifugal fractionation of segregated and unsegregated proteins to be performed. Conditions for the use of stored extract have also been determined. 1991-12-11 /pmc/articles/PMC329185/ /pubmed/1754376 Text en
spellingShingle Matthews, G
Colman, A
A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title_full A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title_fullStr A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title_full_unstemmed A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title_short A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.
title_sort highly efficient, cell-free translation/translocation system prepared from xenopus eggs.
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC329185/
https://www.ncbi.nlm.nih.gov/pubmed/1754376
work_keys_str_mv AT matthewsg ahighlyefficientcellfreetranslationtranslocationsystempreparedfromxenopuseggs
AT colmana ahighlyefficientcellfreetranslationtranslocationsystempreparedfromxenopuseggs
AT matthewsg highlyefficientcellfreetranslationtranslocationsystempreparedfromxenopuseggs
AT colmana highlyefficientcellfreetranslationtranslocationsystempreparedfromxenopuseggs