Phage-Assisted, Active Site-Directed Ligand Evolution with a Genetically EncodedNε-Butyryl-L-Lysine to Identify a Cellularly Potent and Selective Inhibitor for the ENL YEATS Domain as an Anti-Leukemia Agent

التفاصيل البيبلوغرافية
العنوان: Phage-Assisted, Active Site-Directed Ligand Evolution with a Genetically EncodedNε-Butyryl-L-Lysine to Identify a Cellularly Potent and Selective Inhibitor for the ENL YEATS Domain as an Anti-Leukemia Agent
المؤلفون: Peng-Hsun Chase Chen, Xuejiao Shirley Guo, Hanyuan Eric Zhang, Zhi Zachary Geng, Gopal K. Dubey, Carol A. Fierke, Shiqing Xu, Wenshe Ray Liu
بيانات النشر: Cold Spring Harbor Laboratory, 2023.
سنة النشر: 2023
الوصف: Eleven-nineteen leukemia protein (ENL) plays pivotal roles in the leukemogenesis. As a YEATS domain protein, ENL reads histone acylation marks and recruits key transcription factors to leukemic drivers such asHOXA9, MEIS1, andMYBand therefore promotes leukemia development. The histone-reading function of ENL has been proven essential in the onset and progression of several acute leukemias, suggesting a putative therapeutic window for ENL inhibition. In this study, we developed a phage-assisted, active site-directed ligand evolution (PADLE) approach for the identification of potent and selective ENL inhibitors, whereNε-butyryl-l-lysine (BuK) that possesses known target-protein interactions with the ENL YEATS domain was genetically incorporated into a phage display library to serve as a warhead to direct displayed peptides to the active site of ENL YEATS for enrichment. Using this novel strategy in combination with structure-activity relationship that replaced BuK with other ncAAs for de novo π-π-π stacking interactions with two aromatic residues in ENL YEATS, selective and potent ENL inhibitors with aKdvalue as low as 2.0 nM were identified. One pentapeptide inhibitortENL-S1fdisplayed selective inhibition of ENL over other YEATS domains as well as strong cellular target engagement and on-target effects in inhibiting leukemia cell growth and suppressing the expression of ENL target genes. As the first of its kind study, the current work opens a large avenue of research of using PADLE to develop selective and potent peptidyl inhibitors for a large variety of epigenetic reader proteins.
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::8011bc08b842f636212162257b403913
https://doi.org/10.1101/2023.01.08.523168
رقم الأكسشن: edsair.doi...........8011bc08b842f636212162257b403913
قاعدة البيانات: OpenAIRE