CRISPR-Cas9-mediated genome editing in one blastomere of two-cell embryos reveals a novel Tet3 function in regulating neocortical development
Lingbo Wang(Center for Excellence in Molecular Cell Science), Jinsong Li(ShanghaiTech University), Xiang Yu(Chinese Academy of Sciences), Naihe Jing(Chinese Academy of Sciences), Zhoujie Li(Chinese Academy of Sciences), Qi Yin(Beijing Institute of Education), Catherine C. L. Wong(Chinese University of Hong Kong), Wanying Miao(Chinese Academy of Sciences), Jiaoyang Liao(East China Normal University), Erwei Zuo(Agricultural Genomics Institute at Shenzhen), Guangdun Peng(Guangzhou Institutes of Biomedicine and Health), Ke Tang(Nanchang University), Yu Qian(Center for Excellence in Molecular Cell Science), Qing Li(Wenzhou University), Kai Wang(Center for Excellence in Molecular Cell Science), Guodong Chen(Central South University), Min Huang(Chinese Academy of Sciences), Chao Qu(Xi'an University of Science and Technology), Guoliang Xu(Sun Yat-sen University), Hua-Teng Cao(Center for Excellence in Brain Science and Intelligence Technology), Shu-Xin Zhang(Chinese Academy of Sciences), Min-Yin Li(Stanford Medicine)
Cited by 48
Related Papers
Autism-like behaviours and germline transmission in transgenic monkeys overexpressing MeCP2
|Nature|2016|328
Targeting Epigenetic Crosstalk as a Therapeutic Strategy for EZH2-Aberrant Solid Tumors
|Cell|2018|271
One-step generation of complete gene knockout mice and monkeys by CRISPR/Cas9-mediated gene editing with multiple sgRNAs
|Cell Research|2017|218
Oxytocin mediates early experience–dependent cross-modal plasticity in the sensory cortices
|Nature Neuroscience|2014|215