High-affinity, structure-validated and selective macrocyclic peptide tools for chemical biology studies of Huntingtin
Abstract
Huntington’s disease (HD) is a fatal neurodegenerative disorder caused by a Cytosine-Adenosine-Guanine (CAG) repeat expansion in the Huntingtin ( HTT ) gene, with no disease-modifying therapies currently available. The precise molecular function of the HTT protein is unclear, and the lack of selective chemical tools has limited functional studies. We have identified and characterized macrocyclic peptide binders targeting HTT. These binders exhibit low-nanomolar affinity in vitro and engage distinct HTT and HTT-HAP40 interfaces, as revealed by hydrogen–deuterium exchange mass spectrometry and cryoelectron microscopy. Chemoproteomics confirmed selective binding in cell extracts from wildtype but not HTT-null cell lines. HAP40 consistently and stoichiometrically copurified with HTT across cell lines, including with HTT variants containing different CAG repeat lengths, highlighting the broad presence of the HTT-HAP40 complex.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (18)
Rebeka Fanti
Structural Genomics Consortium, University Health Network
Esther Wolf
Structural Genomics Consortium
Tatsuya Ikenoue
Department of Chemistry
Justin C. Deme
Swati Balakrishnan
Structural Genomics Consortium, University Health Network
Brandon A. Keith
Structural Genomics Consortium, University Health Network
Matthew G. Alteen
Structural Genomics Consortium, University Health Network
Renu Chandrasekaran
Structural Genomics Consortium, University Health Network
Manisha Yadav
Structural Genomics Consortium, University Health Network
Ritika Bhajiawala
Structural Genomics Consortium, University Health Network
Suzanne Ackloo
Structural Genomics Consortium
Jia Feng
College of Chemistry and Chemical Engineering
Mahmoud A. Pouladi
Department of Medical Genetics
Aled M. Edwards
Structural Genomics Consortium
Derek J. Wilson
Department of Chemistry
Susan M. Lea
Hiroaki Suga
Rachel J. Harding
Structural Genomics Consortium