Human cleaving embryos enable robust homozygotic nucleotide substitutions by base editors
暂无分享,去创建一个
S. Mitalipov | Yidi Sun | Zi-jiang Chen | Wenqin Ying | Hui Yang | Yu Wei | Yun Sun | Changyang Zhou | Meiling Zhang | N. Yao | Wan-xia Zhong | Yun Li | Keliang Wu | Chunlong Xu | Qingquan Xiao | H. Pan | Gao Yuan
[1] S. Mitalipov,et al. Human cleaving embryos enable robust homozygotic nucleotide substitutions by base editors , 2019, Genome Biology.
[2] L. Steinmetz,et al. Cytosine base editor generates substantial off-target single-nucleotide variants in mouse embryos , 2019, Science.
[3] Q. Gao,et al. Cytosine, but not adenine, base editors induce genome-wide off-target mutations in rice , 2019, Science.
[4] Shisheng Huang,et al. Correction of the Marfan Syndrome Pathogenic FBN1 Mutation by Base Editing in Human Cells and Heterozygous Embryos , 2018, Molecular therapy : the journal of the American Society of Gene Therapy.
[5] Nicole M. Gaudelli,et al. Programmable base editing of A•T to G•C in genomic DNA without DNA cleavage , 2017, Nature.
[6] Dan Liu,et al. Correction of β-thalassemia mutant by base editor in human embryos , 2017, Protein & Cell.
[7] Yixue Li,et al. Highly efficient base editing in human tripronuclear zygotes , 2017, Protein & Cell.
[8] Xingxu Huang,et al. Highly efficient and precise base editing in discarded human tripronuclear embryos , 2017, Protein & Cell.
[9] Jianhui Gong,et al. Correction of a pathogenic gene mutation in human embryos , 2017, Nature.
[10] Hui Yang,et al. One-step generation of complete gene knockout mice and monkeys by CRISPR/Cas9-mediated gene editing with multiple sgRNAs , 2017, Cell Research.
[11] Daesik Kim,et al. Highly efficient RNA-guided base editing in mouse embryos , 2017, Nature Biotechnology.
[12] Ashley R Bonneau,et al. Zygotic genome activation during the maternal-to-zygotic transition. , 2014, Annual review of cell and developmental biology.
[13] J. Elion,et al. Molecular basis of methylmalonyl‐CoA mutase apoenzyme defect in 40 European patients affected by mut° and mut– forms of methylmalonic acidemia: Identification of 29 novel mutations in the MUT gene , 2005, Human mutation.
[14] Peter Braude,et al. Human gene expression first occurs between the four- and eight-cell stages of preimplantation development , 1988, Nature.
[15] P. Braude,et al. The transition from maternal to embryonic control in the 2‐cell mouse embryo. , 1982, The EMBO journal.