Ładuje się...

An extrachromosomal tetracycline-regulatable system for mammalian cells

We have modified the tetracycline-regulatable system so that all components are present on a stable extrachromosomal vector that can replicate in a wide variety of mammalian cells. An EBV/human ori vector is used to carry the system, overcoming the species specificity of conventional Epstein–Barr vi...

Szczegółowa specyfikacja

Zapisane w:
Opis bibliograficzny
Główni autorzy: Sclimenti, Christopher R., Baba, Edward J., Calos, Michele P.
Format: Artykuł
Język:en
Wydane: Oxford University Press 2000
Hasła przedmiotowe:
Dostęp online:https://ncbi.nlm.nih.gov/pmc/articles/PMC110717/
https://ncbi.nlm.nih.gov/pubmed/10954613
Etykiety: Dodaj etykietę
Nie ma etykietki, Dołącz pierwszą etykiete!
id pubmed-110717
record_format dspace
spelling pubmed-1107172002-08-15 An extrachromosomal tetracycline-regulatable system for mammalian cells Sclimenti, Christopher R. Baba, Edward J. Calos, Michele P. Nucleic Acids Res NAR Methods Online We have modified the tetracycline-regulatable system so that all components are present on a stable extrachromosomal vector that can replicate in a wide variety of mammalian cells. An EBV/human ori vector is used to carry the system, overcoming the species specificity of conventional Epstein–Barr virus vectors. By placing the transcriptional transactivator gene under autoregulation, better induction characteristics are obtained. This system offers greater speed and sensitivity than previously reported methods. It can be applied within 3–4 weeks and produces an induction range of several hundred-fold with a low background. Oxford University Press 2000-09-01 /pmc/articles/PMC110717/ /pubmed/10954613 Text en Copyright © 2000 Oxford University Press
institution US National Library of Medicine
collection PubMed Central
language en
format Article
topic NAR Methods Online
spellingShingle NAR Methods Online
Sclimenti, Christopher R.
Baba, Edward J.
Calos, Michele P.
An extrachromosomal tetracycline-regulatable system for mammalian cells
description We have modified the tetracycline-regulatable system so that all components are present on a stable extrachromosomal vector that can replicate in a wide variety of mammalian cells. An EBV/human ori vector is used to carry the system, overcoming the species specificity of conventional Epstein–Barr virus vectors. By placing the transcriptional transactivator gene under autoregulation, better induction characteristics are obtained. This system offers greater speed and sensitivity than previously reported methods. It can be applied within 3–4 weeks and produces an induction range of several hundred-fold with a low background.
author Sclimenti, Christopher R.
Baba, Edward J.
Calos, Michele P.
author_facet Sclimenti, Christopher R.
Baba, Edward J.
Calos, Michele P.
author_sort Sclimenti, Christopher R.
title An extrachromosomal tetracycline-regulatable system for mammalian cells
title_short An extrachromosomal tetracycline-regulatable system for mammalian cells
title_full An extrachromosomal tetracycline-regulatable system for mammalian cells
title_fullStr An extrachromosomal tetracycline-regulatable system for mammalian cells
title_full_unstemmed An extrachromosomal tetracycline-regulatable system for mammalian cells
title_sort extrachromosomal tetracycline-regulatable system for mammalian cells
publisher Oxford University Press
publisher_facet Oxford University Press
publishDate 2000
url https://ncbi.nlm.nih.gov/pmc/articles/PMC110717/
https://ncbi.nlm.nih.gov/pubmed/10954613
_version_ 1759032179428425728