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1.
Life Sci Alliance ; 2(3)2019 06.
Artículo en Inglés | MEDLINE | ID: mdl-31196871

RESUMEN

CRISPR-Cas9-based genome editing has transformed the life sciences, enabling virtually unlimited genetic manipulation of genomes: The RNA-guided Cas9 endonuclease cuts DNA at a specific target sequence and the resulting double-strand breaks are mended by one of the intrinsic cellular repair pathways. Imprecise double-strand repair will introduce random mutations such as indels or point mutations, whereas precise editing will restore or specifically edit the locus as mandated by an endogenous or exogenously provided template. Recent studies indicate that CRISPR-induced DNA cuts may also result in the exchange of genetic information between homologous chromosome arms. However, conclusive data of such recombination events in higher eukaryotes are lacking. Here, we show that in Drosophila, the detected Cas9-mediated editing events frequently resulted in germline-transmitted exchange of chromosome arms-often without indels. These findings demonstrate the feasibility of using the system for generating recombinants and also highlight an unforeseen risk of using CRISPR-Cas9 for therapeutic intervention.


Asunto(s)
Cromosomas , Repeticiones Palindrómicas Cortas Agrupadas y Regularmente Espaciadas , Roturas del ADN de Doble Cadena , Recombinación Homóloga , Animales , Secuencia de Bases , Sistemas CRISPR-Cas , Drosophila/genética , Edición Génica , Expresión Génica , Marcación de Gen , Genes Reporteros , Conformación de Ácido Nucleico , Fenotipo , ARN Guía de Kinetoplastida/genética
2.
PLoS One ; 8(8): e71224, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23951114

RESUMEN

Traditionally, the analysis of gene regulatory regions suffered from the caveat that it was restricted to artificial contexts (e.g. reporter constructs of limited size). With the advent of the BAC recombineering technique, genomic constructs can now be generated to test regulatory elements in their endogenous environment. The expression of the transcriptional repressor brinker (brk) is negatively regulated by Dpp signaling. Repression is mediated by small sequence motifs, the silencer elements (SEs), that are present in multiple copies in the regulatory region of brk. In this work, we manipulated the SEs in the brk locus. We precisely quantified the effects of the individual SEs on the Brk gradient in the wing disc by employing a 1D data extraction method, followed by the quantification of the data with reference to an internal control. We found that mutating the SEs results in an expansion of the brk expression domain. However, even after mutating all predicted SEs, repression could still be observed in regions of maximal Dpp levels. Thus, our data point to the presence of additional, low affinity binding sites in the brk locus.


Asunto(s)
Proteínas de Drosophila/genética , Proteínas de Drosophila/metabolismo , Drosophila/crecimiento & desarrollo , Drosophila/genética , Regulación del Desarrollo de la Expresión Génica , Proteínas Represoras/genética , Elementos Silenciadores Transcripcionales , Animales , Secuencia de Bases , Regulación hacia Abajo , Drosophila/metabolismo , Proteínas de Drosophila/análisis , Genes de Insecto , Genes Reporteros , Sitios Genéticos , Proteínas Fluorescentes Verdes/análisis , Proteínas Fluorescentes Verdes/genética , Mutación , Proteínas Represoras/análisis , Transducción de Señal , Alas de Animales/crecimiento & desarrollo , Alas de Animales/metabolismo
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