Human cleaving embryos enable efficient mitochondrial base-editing with DdCBE
暂无分享,去创建一个
Erwei Zuo | Hui Yang | Yu Wei | Hu Feng | Meiling Zhang | Chunlong Xu | Ying-Ze Wei | Kui Xu | Jing Hu | Zhifang Li | Wen Li | Zhenrui Zuo | Ling Zhou
[1] Bin Shen,et al. Precision modeling of mitochondrial diseases in zebrafish via DdCBE-mediated mtDNA base editing , 2021, Cell discovery.
[2] Beum-Chang Kang,et al. Mitochondrial DNA editing in mice with DddA-TALE fusion deaminases , 2021, Nature Communications.
[3] David R. Liu,et al. A bacterial cytidine deaminase toxin enables CRISPR-free mitochondrial base editing , 2020, Nature.
[4] S. Mitalipov,et al. Human cleaving embryos enable robust homozygotic nucleotide substitutions by base editors , 2019, Genome biology.
[5] C. Moraes,et al. MitoTALEN reduces mutant mtDNA load and restores tRNAAla levels in a mouse model of heteroplasmic mtDNA mutation , 2018, Nature Medicine.
[6] Pedro Rebelo-Guiomar,et al. Genome editing in mitochondria corrects a pathogenic mtDNA mutation in vivo , 2018, Nature Medicine.
[7] Robert W. Taylor,et al. Recent Advances in Mitochondrial Disease. , 2017, Annual review of genomics and human genetics.
[8] Patrick F. Chinnery,et al. The dynamics of mitochondrial DNA heteroplasmy: implications for human health and disease , 2015, Nature Reviews Genetics.
[9] J. C. Belmonte,et al. Selective Elimination of Mitochondrial Mutations in the Germline by Genome Editing , 2015, Cell.
[10] M. Minczuk,et al. Mitochondrially targeted ZFNs for selective degradation of pathogenic mitochondrial genomes bearing large-scale deletions or point mutations , 2014, EMBO molecular medicine.
[11] C. Moraes,et al. Specific elimination of mutant mitochondrial genomes in patient–derived cells by mitoTALENs , 2013, Nature Medicine.
[12] Frank A Witzmann,et al. Mitochondrial matrix phosphoproteome: effect of extra mitochondrial calcium. , 2006, Biochemistry.
[13] S. Dimauro,et al. Mitochondrial diseases , 2016, Nature Reviews Disease Primers.