Targeted insertion and reporter transgene activity at a gene safe harbor of the human blood fluke, Schistosoma mansoni

在人类血吸虫曼氏血吸虫的基因安全港进行定向插入和报告转基因活性

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作者:Wannaporn Ittiprasert, Max F Moescheid, Cristian Chaparro, Victoria H Mann, Thomas Quack, Rutchanee Rodpai, André Miller, Prapakorn Wisitpongpun, Watunyoo Buakaew, Margaret Mentink-Kane, Sarah Schmid, Anastas Popratiloff, Christoph G Grevelding, Christoph Grunau, Paul J Brindley

Abstract

The identification and characterization of genomic safe harbor sites (GSHs) can facilitate consistent transgene activity with minimal disruption to the host cell genome. We combined computational genome annotation and chromatin structure analysis to predict the location of four GSHs in the human blood fluke, Schistosoma mansoni, a major infectious pathogen of the tropics. A transgene was introduced via CRISPR-Cas-assisted homology-directed repair into one of the GSHs in the egg of the parasite. Gene editing efficiencies of 24% and transgene-encoded fluorescence of 75% of gene-edited schistosome eggs were observed. The approach advances functional genomics for schistosomes by providing a tractable path for generating transgenics using homology-directed, repair-catalyzed transgene insertion. We also suggest that this work will serve as a roadmap for the development of similar approaches in helminths more broadly.

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