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Merck

Targeting Processive Transcription Elongation via SEC Disruption for MYC-Induced Cancer Therapy.

Cell (2018-10-20)
Kaiwei Liang, Edwin R Smith, Yuki Aoi, Kristen L Stoltz, Hiroaki Katagi, Ashley R Woodfin, Emily J Rendleman, Stacy A Marshall, David C Murray, Lu Wang, Patrick A Ozark, Rama K Mishra, Rintaro Hashizume, Gary E Schiltz, Ali Shilatifard
ABSTRACT

The super elongation complex (SEC) is required for robust and productive transcription through release of RNA polymerase II (Pol II) with its P-TEFb module and promoting transcriptional processivity with its ELL2 subunit. Malfunction of SEC contributes to multiple human diseases including cancer. Here, we identify peptidomimetic lead compounds, KL-1 and its structural homolog KL-2, which disrupt the interaction between the SEC scaffolding protein AFF4 and P-TEFb, resulting in impaired release of Pol II from promoter-proximal pause sites and a reduced average rate of processive transcription elongation. SEC is required for induction of heat-shock genes and treating cells with KL-1 and KL-2 attenuates the heat-shock response from Drosophila to human. SEC inhibition downregulates MYC and MYC-dependent transcriptional programs in mammalian cells and delays tumor progression in a mouse xenograft model of MYC-driven cancer, indicating that small-molecule disruptors of SEC could be used for targeted therapy of MYC-induced cancer.

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Millipore
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