A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)

Synthetic promoters can be superior to native ones but the design is challenging without knowledge of gene regulation. Here the authors develop a pipeline that allows for screening a synthetic promoter library to identify high performance promoters in potentially any given cell state of interest.

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Autores principales: Ming-Ru Wu, Lior Nissim, Doron Stupp, Erez Pery, Adina Binder-Nissim, Karen Weisinger, Casper Enghuus, Sebastian R. Palacios, Melissa Humphrey, Zhizhuo Zhang, Eva Maria Novoa, Manolis Kellis, Ron Weiss, Samuel D. Rabkin, Yuval Tabach, Timothy K. Lu
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/4058b7f205214aa99e7ffdf21a5903d9
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spelling oai:doaj.org-article:4058b7f205214aa99e7ffdf21a5903d92021-12-02T15:35:47ZA high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)10.1038/s41467-019-10912-82041-1723https://doaj.org/article/4058b7f205214aa99e7ffdf21a5903d92019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10912-8https://doaj.org/toc/2041-1723Synthetic promoters can be superior to native ones but the design is challenging without knowledge of gene regulation. Here the authors develop a pipeline that allows for screening a synthetic promoter library to identify high performance promoters in potentially any given cell state of interest.Ming-Ru WuLior NissimDoron StuppErez PeryAdina Binder-NissimKaren WeisingerCasper EnghuusSebastian R. PalaciosMelissa HumphreyZhizhuo ZhangEva Maria NovoaManolis KellisRon WeissSamuel D. RabkinYuval TabachTimothy K. LuNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ming-Ru Wu
Lior Nissim
Doron Stupp
Erez Pery
Adina Binder-Nissim
Karen Weisinger
Casper Enghuus
Sebastian R. Palacios
Melissa Humphrey
Zhizhuo Zhang
Eva Maria Novoa
Manolis Kellis
Ron Weiss
Samuel D. Rabkin
Yuval Tabach
Timothy K. Lu
A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
description Synthetic promoters can be superior to native ones but the design is challenging without knowledge of gene regulation. Here the authors develop a pipeline that allows for screening a synthetic promoter library to identify high performance promoters in potentially any given cell state of interest.
format article
author Ming-Ru Wu
Lior Nissim
Doron Stupp
Erez Pery
Adina Binder-Nissim
Karen Weisinger
Casper Enghuus
Sebastian R. Palacios
Melissa Humphrey
Zhizhuo Zhang
Eva Maria Novoa
Manolis Kellis
Ron Weiss
Samuel D. Rabkin
Yuval Tabach
Timothy K. Lu
author_facet Ming-Ru Wu
Lior Nissim
Doron Stupp
Erez Pery
Adina Binder-Nissim
Karen Weisinger
Casper Enghuus
Sebastian R. Palacios
Melissa Humphrey
Zhizhuo Zhang
Eva Maria Novoa
Manolis Kellis
Ron Weiss
Samuel D. Rabkin
Yuval Tabach
Timothy K. Lu
author_sort Ming-Ru Wu
title A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
title_short A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
title_full A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
title_fullStr A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
title_full_unstemmed A high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (SPECS)
title_sort high-throughput screening and computation platform for identifying synthetic promoters with enhanced cell-state specificity (specs)
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/4058b7f205214aa99e7ffdf21a5903d9
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