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1.
Nat Commun ; 12(1): 4045, 2021 06 30.
Article in English | MEDLINE | ID: mdl-34193876

ABSTRACT

RAS mutations are the most common oncogenic drivers across human cancers, but there remains a paucity of clinically-validated pharmacological inhibitors of RAS, as druggable pockets have proven difficult to identify. Here, we identify two RAS-binding Affimer proteins, K3 and K6, that inhibit nucleotide exchange and downstream signaling pathways with distinct isoform and mutant profiles. Affimer K6 binds in the SI/SII pocket, whilst Affimer K3 is a non-covalent inhibitor of the SII region that reveals a conformer of wild-type RAS with a large, druggable SII/α3 pocket. Competitive NanoBRET between the RAS-binding Affimers and known RAS binding small-molecules demonstrates the potential to use Affimers as tools to identify pharmacophores. This work highlights the potential of using biologics with small interface surfaces to select unseen, druggable conformations in conjunction with pharmacophore identification for hard-to-drug proteins.


Subject(s)
Biological Products/pharmacology , Cell Surface Display Techniques/methods , Drug Discovery/methods , Neoplasms/drug therapy , ras Proteins/antagonists & inhibitors , Allosteric Site , Biological Products/chemistry , Humans , Neoplasms/chemistry , Neoplasms/enzymology , Signal Transduction , ras Proteins/metabolism
2.
Sci Adv ; 7(31)2021 07.
Article in English | MEDLINE | ID: mdl-34330701

ABSTRACT

FAN1, a DNA structure-specific nuclease, interacts with MLH1, but the repair pathways in which this complex acts are unknown. FAN1 processes DNA interstrand crosslinks (ICLs) and FAN1 variants are modifiers of the neurodegenerative Huntington's disease (HD), presumably by regulating HD-causing CAG repeat expansions. Here, we identify specific amino acid residues in two adjacent FAN1 motifs that are critical for MLH1 binding. Disruption of the FAN1-MLH1 interaction confers cellular hypersensitivity to ICL damage and defective repair of CAG/CTG slip-outs, intermediates of repeat expansion mutations. FAN1-S126 phosphorylation, which hinders FAN1-MLH1 association, is cell cycle-regulated by cyclin-dependent kinase activity and attenuated upon ICL induction. Our data highlight the FAN1-MLH1 complex as a phosphorylation-regulated determinant of ICL response and repeat stability, opening novel paths to modify cancer and neurodegeneration.


Subject(s)
Endodeoxyribonucleases , Exodeoxyribonucleases , DNA , DNA Damage , Endodeoxyribonucleases/metabolism , Exodeoxyribonucleases/genetics , Exodeoxyribonucleases/metabolism , Multifunctional Enzymes/genetics
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