High-resolution characterization of gene function using single-cell CRISPR tiling screen

Identifying functional domains and genetic regulatory mechanisms is essential for developing new therapies. Here the authors present sc-Tiling, single-cell high-density CRISPR tiling screening for functional domain characterization.

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Autores principales: Lu Yang, Anthony K. N. Chan, Kazuya Miyashita, Christopher D. Delaney, Xi Wang, Hongzhi Li, Sheela Pangeni Pokharel, Sandra Li, Mingli Li, Xiaobao Xu, Wei Lu, Qiao Liu, Nicole Mattson, Kevin Yining Chen, Jinhui Wang, Yate-Ching Yuan, David Horne, Steven T. Rosen, Yadira Soto-Feliciano, Zhaohui Feng, Takayuki Hoshii, Gang Xiao, Markus Müschen, Jianjun Chen, Scott A. Armstrong, Chun-Wei Chen
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/ddb7b59f991343969e3fce23606cbf5c
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spelling oai:doaj.org-article:ddb7b59f991343969e3fce23606cbf5c2021-12-02T14:34:12ZHigh-resolution characterization of gene function using single-cell CRISPR tiling screen10.1038/s41467-021-24324-02041-1723https://doaj.org/article/ddb7b59f991343969e3fce23606cbf5c2021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24324-0https://doaj.org/toc/2041-1723Identifying functional domains and genetic regulatory mechanisms is essential for developing new therapies. Here the authors present sc-Tiling, single-cell high-density CRISPR tiling screening for functional domain characterization.Lu YangAnthony K. N. ChanKazuya MiyashitaChristopher D. DelaneyXi WangHongzhi LiSheela Pangeni PokharelSandra LiMingli LiXiaobao XuWei LuQiao LiuNicole MattsonKevin Yining ChenJinhui WangYate-Ching YuanDavid HorneSteven T. RosenYadira Soto-FelicianoZhaohui FengTakayuki HoshiiGang XiaoMarkus MüschenJianjun ChenScott A. ArmstrongChun-Wei ChenNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Lu Yang
Anthony K. N. Chan
Kazuya Miyashita
Christopher D. Delaney
Xi Wang
Hongzhi Li
Sheela Pangeni Pokharel
Sandra Li
Mingli Li
Xiaobao Xu
Wei Lu
Qiao Liu
Nicole Mattson
Kevin Yining Chen
Jinhui Wang
Yate-Ching Yuan
David Horne
Steven T. Rosen
Yadira Soto-Feliciano
Zhaohui Feng
Takayuki Hoshii
Gang Xiao
Markus Müschen
Jianjun Chen
Scott A. Armstrong
Chun-Wei Chen
High-resolution characterization of gene function using single-cell CRISPR tiling screen
description Identifying functional domains and genetic regulatory mechanisms is essential for developing new therapies. Here the authors present sc-Tiling, single-cell high-density CRISPR tiling screening for functional domain characterization.
format article
author Lu Yang
Anthony K. N. Chan
Kazuya Miyashita
Christopher D. Delaney
Xi Wang
Hongzhi Li
Sheela Pangeni Pokharel
Sandra Li
Mingli Li
Xiaobao Xu
Wei Lu
Qiao Liu
Nicole Mattson
Kevin Yining Chen
Jinhui Wang
Yate-Ching Yuan
David Horne
Steven T. Rosen
Yadira Soto-Feliciano
Zhaohui Feng
Takayuki Hoshii
Gang Xiao
Markus Müschen
Jianjun Chen
Scott A. Armstrong
Chun-Wei Chen
author_facet Lu Yang
Anthony K. N. Chan
Kazuya Miyashita
Christopher D. Delaney
Xi Wang
Hongzhi Li
Sheela Pangeni Pokharel
Sandra Li
Mingli Li
Xiaobao Xu
Wei Lu
Qiao Liu
Nicole Mattson
Kevin Yining Chen
Jinhui Wang
Yate-Ching Yuan
David Horne
Steven T. Rosen
Yadira Soto-Feliciano
Zhaohui Feng
Takayuki Hoshii
Gang Xiao
Markus Müschen
Jianjun Chen
Scott A. Armstrong
Chun-Wei Chen
author_sort Lu Yang
title High-resolution characterization of gene function using single-cell CRISPR tiling screen
title_short High-resolution characterization of gene function using single-cell CRISPR tiling screen
title_full High-resolution characterization of gene function using single-cell CRISPR tiling screen
title_fullStr High-resolution characterization of gene function using single-cell CRISPR tiling screen
title_full_unstemmed High-resolution characterization of gene function using single-cell CRISPR tiling screen
title_sort high-resolution characterization of gene function using single-cell crispr tiling screen
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/ddb7b59f991343969e3fce23606cbf5c
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