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A high affinity pan-PI3K binding module supports selective targeted protein degradation of PI3Kα.


ABSTRACT: Class I phosphoinositide 3-kinases (PI3Ks) control cellular growth, but are also essential in insulin signaling and glucose homeostasis. Pan-PI3K inhibitors thus generate substantial adverse effects, a reality that has plagued drug development against this target class. We present here evidence that a high affinity binding module with the capacity to target all class I PI3K isoforms can facilitate selective degradation of the most frequently mutated class I isoform, PI3Kα, when incorporated into a cereblon-targeted (CRBN) degrader. A systematic proteomics study guided the fine tuning of molecular features to optimize degrader selectivity and potency. Our work resulted in the creation of WJ112-14, a PI3Kα-specific nanomolar degrader that should serve as an important research tool for studying PI3K biology. Given the toxicities observed in the clinic with unselective PI3Kα inhibitors, the results here offer a new approach toward selectively targeting this frequently mutated oncogenic driver.

SUBMITTER: Jauslin WT 

PROVIDER: S-EPMC10763047 | biostudies-literature | 2024 Jan

REPOSITORIES: biostudies-literature

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A high affinity pan-PI3K binding module supports selective targeted protein degradation of PI3Kα.

Jauslin Werner Theodor WT   Schild Matthias M   Schaefer Thorsten T   Borsari Chiara C   Orbegozo Clara C   Bissegger Lukas L   Zhanybekova Saule S   Ritz Danilo D   Schmidt Alexander A   Wymann Matthias M   Gillingham Dennis D  

Chemical science 20231212 2


Class I phosphoinositide 3-kinases (PI3Ks) control cellular growth, but are also essential in insulin signaling and glucose homeostasis. Pan-PI3K inhibitors thus generate substantial adverse effects, a reality that has plagued drug development against this target class. We present here evidence that a high affinity binding module with the capacity to target all class I PI3K isoforms can facilitate selective degradation of the most frequently mutated class I isoform, PI3Kα, when incorporated into  ...[more]

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