A catalogue of biochemically diverse CRISPR-Cas9 orthologs
A few bacterial Cas9 nucleases have been repurposed as genome editing tools. Here, the authors use bioinformatic and biochemical analyses to characterize 79 Cas9 proteins, revealing substantial functional diversity and thus expanding the available toolbox of RNA-programmable CRISPR-associated nuclea...
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2020
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oai:doaj.org-article:eff8b92a7b8248269794dd870fd5600c2021-12-02T17:33:12ZA catalogue of biochemically diverse CRISPR-Cas9 orthologs10.1038/s41467-020-19344-12041-1723https://doaj.org/article/eff8b92a7b8248269794dd870fd5600c2020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19344-1https://doaj.org/toc/2041-1723A few bacterial Cas9 nucleases have been repurposed as genome editing tools. Here, the authors use bioinformatic and biochemical analyses to characterize 79 Cas9 proteins, revealing substantial functional diversity and thus expanding the available toolbox of RNA-programmable CRISPR-associated nucleases.Giedrius GasiunasJoshua K. YoungTautvydas KarvelisDarius KazlauskasTomas UrbaitisMonika JasnauskaiteMantvyda M. GrusyteSushmitha PaulrajPo-Hao WangZhenglin HouShane K. DooleyMark CiganClara AlarconN. Doane ChilcoatGreta BigelyteJennifer L. CurcuruMegumu MabuchiZhiyi SunRyan T. FuchsEzra SchildkrautPeter R. WeigeleWilliam E. JackG. Brett RobbČeslovas VenclovasVirginijus SiksnysNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020) |
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Science Q Giedrius Gasiunas Joshua K. Young Tautvydas Karvelis Darius Kazlauskas Tomas Urbaitis Monika Jasnauskaite Mantvyda M. Grusyte Sushmitha Paulraj Po-Hao Wang Zhenglin Hou Shane K. Dooley Mark Cigan Clara Alarcon N. Doane Chilcoat Greta Bigelyte Jennifer L. Curcuru Megumu Mabuchi Zhiyi Sun Ryan T. Fuchs Ezra Schildkraut Peter R. Weigele William E. Jack G. Brett Robb Česlovas Venclovas Virginijus Siksnys A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
description |
A few bacterial Cas9 nucleases have been repurposed as genome editing tools. Here, the authors use bioinformatic and biochemical analyses to characterize 79 Cas9 proteins, revealing substantial functional diversity and thus expanding the available toolbox of RNA-programmable CRISPR-associated nucleases. |
format |
article |
author |
Giedrius Gasiunas Joshua K. Young Tautvydas Karvelis Darius Kazlauskas Tomas Urbaitis Monika Jasnauskaite Mantvyda M. Grusyte Sushmitha Paulraj Po-Hao Wang Zhenglin Hou Shane K. Dooley Mark Cigan Clara Alarcon N. Doane Chilcoat Greta Bigelyte Jennifer L. Curcuru Megumu Mabuchi Zhiyi Sun Ryan T. Fuchs Ezra Schildkraut Peter R. Weigele William E. Jack G. Brett Robb Česlovas Venclovas Virginijus Siksnys |
author_facet |
Giedrius Gasiunas Joshua K. Young Tautvydas Karvelis Darius Kazlauskas Tomas Urbaitis Monika Jasnauskaite Mantvyda M. Grusyte Sushmitha Paulraj Po-Hao Wang Zhenglin Hou Shane K. Dooley Mark Cigan Clara Alarcon N. Doane Chilcoat Greta Bigelyte Jennifer L. Curcuru Megumu Mabuchi Zhiyi Sun Ryan T. Fuchs Ezra Schildkraut Peter R. Weigele William E. Jack G. Brett Robb Česlovas Venclovas Virginijus Siksnys |
author_sort |
Giedrius Gasiunas |
title |
A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
title_short |
A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
title_full |
A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
title_fullStr |
A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
title_full_unstemmed |
A catalogue of biochemically diverse CRISPR-Cas9 orthologs |
title_sort |
catalogue of biochemically diverse crispr-cas9 orthologs |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/eff8b92a7b8248269794dd870fd5600c |
work_keys_str_mv |
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