Targeted degradation of CDK9 potently disrupts the MYC-regulated network.

靶向降解 CDK9 可有效破坏 MYC 调控网络

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作者:Toure Mohammed A, Motoyama Keisuke, Xiang Yichen, Urgiles Julie, Kabinger Florian, Koglin Ann-Sophie, Iyer Ramya S, Gagnon Kaitlyn, Kumar Amruth, Ojeda Samuel, Harrison Drew A, Rees Matthew G, Roth Jennifer A, Ott Christopher J, Schiavoni Richard, Whittaker Charles A, Levine Stuart S, White Forest M, Calo Eliezer, Richters Andre, Koehler Angela N
CDK9 coordinates signaling events that regulate transcription and is implicated in oncogenic pathways, making it an actionable target for drug development. While numerous CDK9 inhibitors have been developed, success in the clinic has been limited. Targeted degradation offers a promising alternative. A comprehensive evaluation of degradation versus inhibition is needed to assess when degradation might offer superior therapeutic outcomes. We report a selective and potent CDK9 degrader with rapid kinetics, comparing its downstream effects to those of a conventional inhibitor. We validated that CDK9 inhibition triggers a compensatory feedback mechanism that dampens its anticipated effect on MYC expression and found that this was absent when degraded. Importantly, degradation is more effective at disrupting MYC transcriptional regulation and subsequently destabilizing nucleolar homeostasis, likely by abrogation of both enzymatic and scaffolding functions of CDK9. These findings suggest that CDK9 degradation offers a more robust strategy to overcome limitations associated with its inhibition.

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