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Chemical Communications (Cambridge, England)|March 28, 2015
Yeast transcription co-activator Sub1 and its human homolog PC4 preferentially bind to G-quadruplex DNAJun Gao, Boris L Zybailov, Alicia K Byrd, et al.
Nucleic Acids Research|April 4, 2017
Yeast Sub1 and human PC4 are G-quadruplex binding proteins that suppress genome instability at co-transcriptionally formed G4 DNAChristopher R Lopez, Shivani Singh, Shashank Hambarde, et al.
Biorxiv : the Preprint Server for Biology|March 11, 2024
β-amino acids reduce ternary complex stability and alter the translation elongation mechanismF Aaron Cruz-Navarrete, Wezley C Griffin, Yuk-Cheung Chan, et al.
ACS Central Science|July 1, 2024
β-Amino Acids Reduce Ternary Complex Stability and Alter the Translation Elongation MechanismF Aaron Cruz-Navarrete, Wezley C Griffin, Yuk-Cheung Chan, et al.
The Journal of Biological Chemistry|July 3, 2016
Evidence That G-quadruplex DNA Accumulates in the Cytoplasm and Participates in Stress Granule Assembly in Response to Oxidative StressAlicia K Byrd, Boris L Zybailov, Leena Maddukuri, et al.
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