4.8 Article

Chemogenetic profiling reveals PP2A-independent cytotoxicity of proposed PP2A activators iHAP1 and DT-061

Journal

EMBO JOURNAL
Volume 41, Issue 14, Pages -

Publisher

WILEY
DOI: 10.15252/embj.2022110611

Keywords

chemogenic profiling; DT-061; iHAP1; phosphatase; PP2A

Funding

  1. Danish Cancer Society [R269-A15586-B17, R146-A9322]
  2. Independent Research Fund Denmark [8021-00101B, 0134-00199B, 7016-00055, 6108-00542B]
  3. Novo Nordisk Foundation [NNF18OC0053124, NNF20OC0065098, NNF18CC0033876, NNF18OC0032996]
  4. Swiss National Fund [P2EZP3_178624]
  5. Danish Lundbeckfonden [2017-3212]
  6. NIH/NIGMS [R35GM119455]
  7. NIH/NCI [R33CA225458]
  8. Wellcome Trust [202811]
  9. [NNF14CC0001]
  10. [NNF17CC0027852]
  11. Swiss National Science Foundation (SNF) [P2EZP3_178624] Funding Source: Swiss National Science Foundation (SNF)

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This study reveals the effects of iHAP1 and DT-061 on biological pathways through genome-wide CRISPR-Cas9 synthetic lethality screens, showing that iHAP1 mainly acts on microtubule assembly, while DT-061 mainly acts on Golgi apparatus and endoplasmic reticulum.
Protein phosphatase 2A (PP2A) is an abundant phosphoprotein phosphatase that acts as a tumor suppressor. For this reason, compounds able to activate PP2A are attractive anticancer agents. The compounds iHAP1 and DT-061 have recently been reported to selectively stabilize specific PP2A-B56 complexes to mediate cell killing. We were unable to detect direct effects of iHAP1 and DT-061 on PP2A-B56 activity in biochemical assays and composition of holoenzymes. Therefore, we undertook genome-wide CRISPR-Cas9 synthetic lethality screens to uncover biological pathways affected by these compounds. We found that knockout of mitotic regulators is synthetic lethal with iHAP1 while knockout of endoplasmic reticulum (ER) and Golgi components is synthetic lethal with DT-061. Indeed we showed that iHAP1 directly blocks microtubule assembly both in vitro and in vivo and thus acts as a microtubule poison. In contrast, DT-061 disrupts both the Golgi apparatus and the ER and lipid synthesis associated with these structures. Our work provides insight into the biological pathways perturbed by iHAP1 and DT-061 causing cellular toxicity and argues that these compounds cannot be used for dissecting PP2A-B56 biology.

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