2018
DOI: 10.1002/ange.201709201
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Genome im Fokus: Entwicklung und Anwendungen von CRISPR‐Cas9‐Bildgebungstechnologien

Abstract: Die Entdeckung der CRISPR‐Cas9‐Endonuklease ermöglicht die einfache Genom‐Editierung von lebenden Zellen und Organismen. Katalytisch deaktivierte Cas9 (dCas9) behält die Fähigkeit, DNA in einer RNA‐abhängigen Weise zu binden, und wurde zusätzlich als ein Werkzeug für die Transkriptionsmodulation, die Epigenom‐Editierung und die genomische Bildgebung entwickelt. Dieser Aufsatz zeigt die jüngsten Fortschritte und Herausforderungen bei der Entwicklung von dCas9 für die Bildgebung genomischer Loci auf. Die Entsteh… Show more

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Cited by 7 publications
(1 citation statement)
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References 120 publications
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“…CRISPR/Cas system, which normally plays the role of a bacterial immune systems [ 14 , 15 ], has been developed into powerful tools for genome editing [ 16 , 17 ], genome imaging [ 18 ], cell imaging [ [19] , [20] , [21] ], and disease treatment [ [22] , [23] , [24] ]. The CRISPR/Cas system is also a promising platform for next-generation molecular detection technologies with high sensitivity and specificity that require no special instrumentation [ 25 , 26 ].…”
Section: Introductionmentioning
confidence: 99%
“…CRISPR/Cas system, which normally plays the role of a bacterial immune systems [ 14 , 15 ], has been developed into powerful tools for genome editing [ 16 , 17 ], genome imaging [ 18 ], cell imaging [ [19] , [20] , [21] ], and disease treatment [ [22] , [23] , [24] ]. The CRISPR/Cas system is also a promising platform for next-generation molecular detection technologies with high sensitivity and specificity that require no special instrumentation [ 25 , 26 ].…”
Section: Introductionmentioning
confidence: 99%