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Phosphorylation-inducing chimera rewires oncogenic kinase to trigger apoptosis

biorxiv. 2025-06; 
Manuel L. Merz; Veronika M. Shoba; Rajaiah Pergu; Zachary C. Severance; Dhanushka N. P. Munkanatta Godage; Arghya Deb; Hui Si Kwok; Prashant Singh; Sameek Singh; Jonathan B. Allen; Wenzhi Tian; Pallavi M. Gosavi; Santosh K. Chaudhary; Viktoriya Anokhina; Ellen L. Weisberg; N. Connor Payne; Yao He; Reilly Osadchey; Mrinal Shekhar; Ralph Mazitschek; Matthew G. Rees; Jennifer A. Roth; Qiang Cui; James D. Griffin; Brian B. Liau; Amit Choudhary
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PCR Cloning and Subcloning sedimentation coefficients of samples were represented as S20,w referring to sedimentation at 20 C. NanoBiT ternary complex formation. Full-length BCR-ABL1 (GenScript) was fused N-terminally with LgBt and SmBt (sequences shown in Supplementary Table 1 ) and cloned into the pCDNA3.1 vector backbone using NEBuilder HiFi Get A Quote

摘要

Hyperactive enzymes drive the pathology of several diseases, and classically, occupancy-driven drugs (e.g., active site or allosteric inhibitors) are used to target these enzymes. However, the stoichiometric nature of such inhibitors and the emergence of resistance highlight the need for new modalities. Here, we report a Phosphorylation-Inducing Chimeric Small molecule (PHICS) that rewires the hyperactivity of an oncogenic kinase, BCR-ABL, to phosphorylate its active site residue. Molecular dynamics simulations suggest this phosphorylation inhibits BCR-ABL by inducing electrostatic rearrangements of its active site. This event-driven mechanism selectively induces apoptosis of BCR-ABL-dependent cancer cells at s... More

关键词

BCR-ABL, PHICS, phosphorylation, induced proximity, event-driven pharmacology, resistance development, CRISPR-suppressor scanning