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CRISPR mediated transactivation in the human disease vector Aedes aegypti

PLoS Pathog. 2023-01; 
Michelle Bui, Elena Dalla Benetta, Yuemei Dong, Yunchong Zhao, Ting Yang, Ming Li, Igor A Antoshechkin, Anna Buchman, Vanessa Bottino-Rojas, Anthony A James, Michael W Perry, George Dimopoulos, Omar S Akbari
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摘要

As a major insect vector of multiple arboviruses, Aedes aegypti poses a significant global health and economic burden. A number of genetic engineering tools have been exploited to understand its biology with the goal of reducing its impact. For example, current tools have focused on knocking-down RNA transcripts, inducing loss-of-function mutations, or expressing exogenous DNA. However, methods for transactivating endogenous genes have not been developed. To fill this void, here we developed a CRISPR activation (CRISPRa) system in Ae. aegypti to transactivate target gene expression. Gene expression is activated through pairing a catalytically-inactive ('dead') Cas9 (dCas9) with a highly-active tripartite activa... More

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