
商务合作

动脉网APP
可切换为仅中文
We developed click editors, comprising HUH endonucleases, DNA-dependent DNA polymerases and CRISPR–Cas9 nickases, which together enable programmable precision genome engineering from simple DNA templates.
我们开发了click编辑器,包括HUH核酸内切酶,DNA依赖性DNA聚合酶和CRISPR-Cas9切口酶,它们共同实现了从简单DNA模板进行可编程精确基因组工程。
Access through your institution
通过您的机构访问
Buy or subscribe
购买或订阅
This is a preview of subscription content, access via your institution
这是订阅内容的预览,可通过您的机构访问
Access options
访问选项
Access through your institution
通过您的机构访问
Access through your institution
通过您的机构访问
Change institution
变革机构
Buy or subscribe
购买或订阅
Access Nature and 54 other Nature Portfolio journalsGet Nature+, our best-value online-access subscription24,99 € / 30 dayscancel any timeLearn moreSubscription info for Chinese customersWe have a dedicated website for our Chinese customers. Please go to naturechina.com to subscribe to this journal.Go to naturechina.comBuy this articlePurchase on Springer LinkInstant access to full article PDFBuy nowPrices may be subject to local taxes which are calculated during checkout.
Access Nature和54篇其他Nature Portfolio journalsGet Nature+,我们最有价值的在线订阅24,99欧元/30天,随时为中国客户获取更多订阅信息我们为中国客户提供了一个专门的网站。请访问naturechina.com订阅本期刊。访问naturechina.comBuy本文在Springer link上购买即时访问完整文章PDFBuy now价格可能需要缴纳结帐时计算的地方税。
Additional access options:
其他访问选项:
Log in
登录
Learn about institutional subscriptions
了解机构订阅
Read our FAQs
阅读我们的常见问题
Contact customer support
联系客户支持
Fig. 1: Click editing enzymes and mechanism.
图1:点击编辑酶和机制。
ReferencesHalperin, S. O. et al. CRISPR-guided DNA polymerases enable diversification of all nucleotides in a tunable window. Nature 550, 248–252 (2018). This manuscript describes the fusion of an error-prone polymerase to CRISPR–Cas9 to mutagenize specified genomic regions.Article
参考文献Halperin,S.O。等人。CRISPR引导的DNA聚合酶能够在可调窗口中使所有核苷酸多样化。自然550248-252(2018)。该手稿描述了易错聚合酶与CRISPR-Cas9的融合,以诱变特定的基因组区域。文章
Google Scholar
谷歌学者
Anzalone, A. V. et al. Search-and-replace genome editing without double-strand breaks or donor DNA. Nature 576, 149–157 (2019). This paper reports the development of prime editing, a precise genome-editing approach that uses reverse transcriptases to write specific edits into a genome.Article .
Anzalone,A.V.等人在没有双链断裂或供体DNA的情况下搜索和替换基因组编辑。自然576149-157(2019)。本文报道了prime编辑的发展,这是一种精确的基因组编辑方法,使用逆转录酶将特定编辑写入基因组。文章。
CAS
中科院
PubMed
PubMed
PubMed Central
公共医学中心
Google Scholar
谷歌学者
Levesque, S., Cosentino, A., Verma, A., Genovese, P. & Bauer, D. E. Enhancing prime editing in hematopoietic stem and progenitor cells by modulating nucleotide metabolism. Nat. Biotechnol. https://doi.org/10.1038/s41587-024-02266-4 (2024). This manuscript reports the dependence of RT-based genome editing technologies, such as prime editors, on cellular dNTP levels.Aird, E.
Levesque,S.,Cosentino,A.,Verma,A.,Genovese,P。&Bauer,D.E。通过调节核苷酸代谢增强造血干细胞和祖细胞的初级编辑。美国国家生物技术公司。https://doi.org/10.1038/s41587-024-02266-4(2024年)。该手稿报告了基于RT的基因组编辑技术(例如prime editors)对细胞dNTP水平的依赖性。艾尔德,E。
L. et al. Increasing Cas9-mediated homology-directed repair efficiency through covalent tethering of DNA repair template. Commun. Biol. 1, 54 (2018). This study describes the use of HUHes to recruit ssDNA templates to Cas9-mediated DNA breaks to improve homology-directed repair efficiencies.Article .
五十、 等人。通过DNA修复模板的共价束缚来提高Cas9介导的同源性定向修复效率。Commun公司。生物学1,54(2018)。这项研究描述了使用HUHes将ssDNA模板募集到Cas9介导的DNA断裂中,以提高同源性定向修复效率。文章。
PubMed
PubMed
PubMed Central
公共医学中心
Google Scholar
谷歌学者
Liu, B. et al. Targeted genome editing with a DNA-dependent DNA polymerase and exogenous DNA-containing templates. Nat. Biotechnol. https://doi.org/10.1038/s41587-023-01947-w (2023). This paper reports the development of DNA polymerase-based editors using RNA or DNA substrates for precise genome editing.Article .
Liu,B.等人。用DNA依赖性DNA聚合酶和含有外源DNA的模板进行靶向基因组编辑。美国国家生物技术公司。https://doi.org/10.1038/s41587-023-01947-w(2023年)。本文报道了使用RNA或DNA底物进行精确基因组编辑的基于DNA聚合酶的编辑器的开发。文章。
PubMed
PubMed
PubMed Central
公共医学中心
Google Scholar
谷歌学者
Download referencesAdditional informationPublisher’s note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.This is a summary of: Ferreira da Silva, J. et al. Click editing enables programmable genome writing using DNA polymerases and HUH endonucleases.
下载参考其他信息出版商的注释Springer Nature对于已发布地图和机构隶属关系中的管辖权主张保持中立。这是一个总结:Ferreira da Silva,J。等人。点击编辑可以使用DNA聚合酶和HUH核酸内切酶进行可编程基因组写入。
Nat. Biotechnol. https://doi.org/10.1038/s41587-024-02324-x (2024).Rights and permissionsReprints and permissionsAbout this articleCite this article Precise and versatile genome editing with click editors..
美国国家生物技术公司。https://doi.org/10.1038/s41587-024-02324-x(2024年)。权利和许可打印和许可关于本文引用本文使用click Editor进行精确而通用的基因组编辑。。
Nat Biotechnol (2024). https://doi.org/10.1038/s41587-024-02340-xDownload citationPublished: 22 July 2024DOI: https://doi.org/10.1038/s41587-024-02340-xShare this articleAnyone you share the following link with will be able to read this content:Get shareable linkSorry, a shareable link is not currently available for this article.Copy to clipboard.
Nat Biotechnol(2024)。https://doi.org/10.1038/s41587-024-02340-xDownload引文发布日期:2024年7月22日OI:https://doi.org/10.1038/s41587-024-02340-xShare本文与您共享以下链接的任何人都可以阅读此内容:获取可共享链接对不起,本文目前没有可共享的链接。复制到剪贴板。
Provided by the Springer Nature SharedIt content-sharing initiative
由Springer Nature SharedIt内容共享计划提供