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Hui Mei
hui.mei@siat.ac.cn
English, Chinese, German
Guangdong
University of Chinese Academy of Sciences
Life Sciences
  • 2009-04--2015-02 PhD: University of Osnabrück
  • 2006-09--2008-07 Master's: Peking University
  • 2002-09--2006-07 Bachelor's: Peking University
  • 2019-09~Present - Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences - Associate Researcher
  • 2018-03~2019-07 - Stanford University - Postdoctoral Researcher
  • 2015-10~2018-02 - University of California, Irvine - Postdoctoral Researcher
Nucleic Acid Chemical Biology
Synthetic Biology
  • Angew Chem Int Ednull, Hui Mei, 2024
  • Nucleic Acids Res.null, Hui Mei, 2023
  • Chemistrynull, Hui Mei, 2022
  • Acta crystallographica. Section C, Structural chemistrynull, Hui Mei, 2022
  • Synthesis and polymerase recognition of a pyrrolocytidineTNAtriphosphate, Mei, Hui, Wang, Yajun, Yik, Eric J, Chaput, John C., 2021
  • 以非天然核酸为遗传物质的人工生命构建, 白艳芬, 聂朋, 熊成鹤, 温骏林, 甘海云, 马晴, 胡政, 李雪飞, 于涛, 黄建东, 梅辉, 2021
  • Synthetic Life with Alternative Nucleic Acids as Genetic Materials, Nie, Peng, Bai, Yanfen, Mei, Hui, 2020
  • Expanding the chemical diversity of TNA with tUTP derivatives that are substrates for a TNA polymerase, Mei, Hui, Chaput, John C., 2018
  • Synthesis and Evolution of a Threose Nucleic Acid Aptamer Bearing 7-Deaza-7-Substituted Guanosine Residues, Mei, Hui, Liao, JenYu, Jimenez, Randi M, Wang, Yajun, Bala, Saikat, McCloskey, Cailen, Switzer, Christopher, Chaput, John C., 2018
  • Synthesis and polymerase activity of a fluorescent cytidine TNA triphosphate analogue, Mei, Hui, Shi, Changhua, Jimenez, Randi M, Wang, Yajun, Kardouh, Miramar, Chaput, John C., 2017
  • 3-Phenyl-5,6,7,8-tetrahydropyrimido4,5-cpyridazin-7-one as nucleobase substitute in DNA: synthesis of the 2 '-deoxyribonucleoside, cyclonucleoside formation, and base pairing in oligonucleotides, Mei, Hui, Ingale, Sachin A, Seela, Frank, 2015
  • Robust silver-mediated imidazolo-dC base pairs in metal DNA: dinuclear silver bridges with exceptional stability in double helices with parallel and antiparallel strand orientation, Jana, Sunit Kumar, Guo, Xiurong, Mei, Hui, Seela, Frank, 2015
  • Pyrrolo-dC Metal Base Pairs in the Reverse Watson-Crick Double Helix: Capturing of Silver-Ions, Enhanced Stability of Parallel DNA and Impact of 6-Pyridinyl Residues on Fluorescence and Metal Ion Binding., Mei Hui, 2015
  • Silver Arrays Inside DNA Duplexes Constructed from Ag+-mediated Pyrrolo-dC – Pyrrolo-dC Base Pairs., Mei Hui, 2014
  • Imidazolo-dC Metal-Mediated Base Pairs: Purine Nucleosides Capture Two Ag+ Ions and Form a Duplex with the Stability of a Covalent DNA Cross-Link, Mei, Hui, Ingale, Sachin A, Seela, Frank, 2014
  • Ag+-mediated DNA Base Pairing: Extraordinary Stable Pyrrolo-dC – Pyrrolo-dC Pairs Binding Two Silver Ions., Mei Hui, 2013
  • Pyrene and bis-pyrene DNA nucleobase conjugates: excimer and monomer fluorescence of linear and dendronized cytosine and 7-deazaguanine click adducts, Mei, Hui, Ingale, Sachin A, Seela, Frank, 2013
  • Construction and Assembly of Chimeric DNA: Oligonucleotide Hybrid Molecules Composed of Parallel or Antiparallel Duplexes and Tetrameric i-Motifs, Mei, Hui, Budow, Simone, Seela, Frank, 2012
  • Synthesis of a Fluorescent Cytidine TNA Triphosphate Analogue, Humana Press, 2019
Nucleic Acids Chemical Biology Synthetic Biology Genetic Materials Polymerase Tna Dna Rna Biopolymers Fluorescent Cytidine

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