Sung Key Jang

Sung Key Jang

Pohang University of Science and Technology

Professor

Department of Life Sciences

Research Area

  • #Biology
  • #Genetics
  • #Hepatitis C virus
  • #Chemistry
  • #Molecular biology
  • #Cell biology
  • #Biochemistry
  • #Translational regulation
  • #Internal ribosome entry site
  • #NS5A

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Contact information

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Related papers to
‘ Biology ‘ : 17

  • Translation initiation mediated by RNA looping

    2015/01

    9.5 Impact Factor

    36 citations

    Ki Young Paek, Ka Young Hong, Incheol Ryu, Sung Mi Park, Sun Ju Keum, Oh Sung Kwon, Sung Key Jang

    DOI : 10.1073/PNAS.1416883112

    • #Biology
    • #Genetics
    • #Eukaryotic translation
    • #Translational regulation
    • #Initiation factor
    • #Eukaryotic initiation factor
    • #Internal ribosome entry site
    • #Five prime untranslated region
    • #Ribosomal binding site
    • #EIF4G

All papers authored by
‘ Sung Key Jang ’ : 26

  • Translation initiation mediated by RNA looping

    2015/01
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA

    9.5 Impact Factor

    36 citations

    Ki Young Paek, Ka Young Hong, Incheol Ryu, Sung Mi Park, Sun Ju Keum, Oh Sung Kwon, Sung Key Jang

    DOI : 10.1073/PNAS.1416883112

    • #Biology
    • #Genetics
    • #Eukaryotic translation
    • #Translational regulation
    • #Initiation factor
    • #Eukaryotic initiation factor
    • #Internal ribosome entry site
    • #Five prime untranslated region
    • #Ribosomal binding site
    • #EIF4G

Related papers to
‘ Biology ‘ : 17

  • Translation initiation mediated by RNA looping

    2015/01
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA

    9.5 Impact Factor

    36 citations

    Ki Young Paek, Ka Young Hong, Incheol Ryu, Sung Mi Park, Sun Ju Keum, Oh Sung Kwon, Sung Key Jang

    DOI : 10.1073/PNAS.1416883112

    • #Biology
    • #Genetics
    • #Eukaryotic translation
    • #Translational regulation
    • #Initiation factor
    • #Eukaryotic initiation factor
    • #Internal ribosome entry site
    • #Five prime untranslated region
    • #Ribosomal binding site
    • #EIF4G
  • Agonistic aptamer to the insulin receptor leads to biased signaling and functional selectivity through allosteric modulation

    2015/09
    NUCLEIC ACIDS RESEARCH

    9.2 Impact Factor

    33 citations

    Na-Oh Yunn, Ara Koh, Seungmin Han, Jong Hun Lim, Sehoon Park, Jiyoun Lee, Eui Kim, Sung Key Jang, Per-Olof Berggren, Sung Ho Ryu

    DOI : 10.1093/NAR/GKV767

    • #Biology
    • #Molecular biology
    • #Cell biology
    • #Signal transduction
    • #Phosphorylation
    • #Allosteric regulation
    • #Aptamer
    • #Protein kinase B
    • #Autophosphorylation
    • #Functional selectivity
    • #Insulin receptor

Get access to
Contact information

Log in

All papers authored by
‘ Sung Key Jang ’ : 26

  • Translation initiation mediated by RNA looping

    2015/01
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA

    9.5 Impact Factor

    36 citations

    Ki Young Paek, Ka Young Hong, Incheol Ryu, Sung Mi Park, Sun Ju Keum, Oh Sung Kwon, Sung Key Jang

    DOI : 10.1073/PNAS.1416883112

    • #Biology
    • #Genetics
    • #Eukaryotic translation
    • #Translational regulation
    • #Initiation factor
    • #Eukaryotic initiation factor
    • #Internal ribosome entry site
    • #Five prime untranslated region
    • #Ribosomal binding site
    • #EIF4G
  • Agonistic aptamer to the insulin receptor leads to biased signaling and functional selectivity through allosteric modulation

    2015/09
    NUCLEIC ACIDS RESEARCH

    9.2 Impact Factor

    33 citations

    Na-Oh Yunn, Ara Koh, Seungmin Han, Jong Hun Lim, Sehoon Park, Jiyoun Lee, Eui Kim, Sung Key Jang, Per-Olof Berggren, Sung Ho Ryu

    DOI : 10.1093/NAR/GKV767

    • #Biology
    • #Molecular biology
    • #Cell biology
    • #Signal transduction
    • #Phosphorylation
    • #Allosteric regulation
    • #Aptamer
    • #Protein kinase B
    • #Autophosphorylation
    • #Functional selectivity
    • #Insulin receptor

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