Achievements

  • home_icon HOME
  • Research
  • Achievements
  • Paper
Paper
  1. The crystal structure of Capicua HMG-box domain complexed with the ETV5-DNA and its implications for Capicua-mediated cancers

    FEBS Journal / / 2019 / Song, Ji-Joon / KIB > Cancer Metastasis Control

  2. Structural basis of recognition and destabilization of the histone H2B ubiquitinated nucleosome by the DOT1L histone H3 Lys79 methyltransferase

    Genes & Development / / 2019 / Song, Ji-Joon / KIB > Cancer Metastasis Control

  3. Optogenetic activation of intracellular antibodies for direct modulation of endogenous proteins

    NATURE METHODS / / 2019 / Oh, Byung-Ha / KIB > Cancer Metastasis Control

  4. Structural basis for recognition of the tumor suppressor protein PTPN14 by the oncoprotein E7 of human papillomavirus

    PLOS BIOLOGY / / 2019 / Oh, Byung-Ha / KIB > Cancer Metastasis Control

  5. Covalent binding of uracil DNA glycosylase UdgX to abasic DNA upon uracil excision

    NATURE CHEMICAL BIOLOGY / / 2019 / Oh, Byung-Ha / KIB > Cancer Metastasis Control

  6. Oncogenic KRAS Sensitizes Lung Adenocarcinoma to GSK-J4–Induced Metabolic and Oxidative Stress

    Cancer Research / / 2019 / Kim, Mi Young / KIB > Cancer Metastasis Control

  7. Hyaluronic acid–bilirubin nanomedicine for targeted modulation of dysregulated intestinal barrier, microbiome and immune responses in colitis

    Nature Materials / / 2019 / Jon, Sangyong / KIB > Cancer Metastasis Control

  8. Lissajous Scanning Two-photon Endomicroscope for In vivo Tissue Imaging

    Scientific Reports / / 2019 / Jon, Sangyong / KIB > Cancer Metastasis Control

  9. A Hybrid Platform Based on a Bispecific Peptide–Antibody Complex for Targeted Cancer Therapy

    Angewandte Chemie, Communications / / 2019 / Jon, Sangyong / KIB > Cancer Metastasis Control

  10. Antibody-Assisted Delivery of a Peptide−Drug Conjugate for Targeted Cancer Therapy

    Molecular Pharmaceutics / / 2019 / Jon, Sangyong / KIB > Cancer Metastasis Control

KAIST 291 Daehak-ro, Yuseong-gu, Daejeon (34141)
T : +82-42-350-2381~2384
F : +82-42-350-2080
Copyright (C) 2015. KAIST Institute