Falong Lu
Affiliations: | Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, Beijing, Beijing Shi, China |
Area:
EpigeneticsWebsite:
http://sourcedb.genetics.cas.cn/zw/zjrck/201612/t20161202_4715253.htmlGoogle:
"Falong Lu"Mean distance: (not calculated yet)
Parents
Sign in to add mentorXiao Feng Cao | grad student | CAS (Plant Biology Tree) | |
Yi Zhang | grad student | Harvard Medical School - Boston Children's Hospital (Neurotree) |
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Publications
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Liu Y, Liu Y, Zhu Y, et al. (2024) KDM2A and KDM2B protect a subset of CpG Islands from DNA methylation. Journal of Genetics and Genomics = Yi Chuan Xue Bao |
Liao Z, Zhang J, Sun S, et al. (2024) Reprogramming mechanism dissection and trophoblast replacement application in monkey somatic cell nuclear transfer. Nature Communications. 15: 5 |
Zhu W, Bu G, Hu R, et al. (2023) KLF4 facilitates chromatin accessibility remodeling in porcine early embryos. Science China. Life Sciences |
Shu M, Hong D, Lin H, et al. (2022) Single-cell chromatin accessibility identifies enhancer networks driving gene expression during spinal cord development in mouse. Developmental Cell |
Luo Z, Du Y, Li S, et al. (2022) Three distinct enhancers cooperate for sound receptor hair cell development. Proceedings of the National Academy of Sciences of the United States of America. 119: e2119850119 |
Zhang H, Liu Y, Xie Y, et al. (2022) H3K27me3 shapes DNA methylome by inhibiting UHRF1-mediated H3 ubiquitination. Science China. Life Sciences |
Liu Y, Nie H, Lu F. (2020) Dynamic RNA 3' Uridylation and Guanylation during Mitosis. Iscience. 23: 101402 |
Wang LY, Li ZK, Wang LB, et al. (2020) Overcoming Intrinsic H3K27me3 Imprinting Barriers Improves Post-implantation Development after Somatic Cell Nuclear Transfer. Cell Stem Cell |
Liu Y, Nie H, Liu H, et al. (2019) Poly(A) inclusive RNA isoform sequencing (PAIso-seq) reveals wide-spread non-adenosine residues within RNA poly(A) tails. Nature Communications. 10: 5292 |
Tuesta LM, Djekidel MN, Chen R, et al. (2019) In vivo nuclear capture and molecular profiling identifies Gmeb1 as a transcriptional regulator essential for dopamine neuron function. Nature Communications. 10: 2508 |