参考资料
[1]Mok, B. Y.; de Moraes, M. H.; Zeng, J.; Bosch, D. E.; Kotrys, A. V.; Raguram, A.; Hsu, F.; Radey, M. C.; Peterson, S. B.; Mootha, V. K.; Mougous, J. D.; Liu, D. R., A bacterial cytidine deaminase toxin enables CRISPR-free mitochondrial base editing. Nature 2020. https://www.nature.com/articles/s41586-020-2477-4
[2]https://www.sciencemag.org/news/2020/07/new-method-edit-cell-s-powerhouse-dna-could-help-study-variety-genetic-diseases
[3]Yeh, W.-H.; Chiang, H.; Rees, H. A.; Edge, A. S. B.; Liu, D. R., In vivo base editing of post-mitotic sensory cells. Nature Communications 2018, 9 (1), 2184.
[4]Shen, M. W.; Arbab, M.; Hsu, J. Y.; Worstell, D.; Culbertson, S. J.; Krabbe, O.; Cassa, C. A.; Liu, D. R.; Gifford, D. K.; Sherwood, R. I., Predictable and precise template-free CRISPR editing of pathogenic variants. Nature 2018, 563 (7733), 646-651.
[5]The First Precision Gene Editing Tool for Mitochondrial DNA. https://www.lifespan.io/news/the-first-precision-gene-editing-tool-for-mitochondrial-dna/
[6]New molecular tool precisely edits mitochondrial DNA. https://www.sciencedaily.com/releases/2020/07/200708121436.htm
[7]Scientists make precise gene edits to mitochondrial DNA for first time. https://www.nature.com/articles/d41586-020-02054-5