1. Academic Validation
  2. Select microtubule inhibitors increase lysosome acidity and promote lysosomal disruption in acute myeloid leukemia (AML) cells

Select microtubule inhibitors increase lysosome acidity and promote lysosomal disruption in acute myeloid leukemia (AML) cells

  • Apoptosis. 2015 Jul;20(7):948-59. doi: 10.1007/s10495-015-1123-3.
Dannie Bernard 1 Marinella Gebbia Swayam Prabha Marcela Gronda Neil MacLean Xiaoming Wang Rose Hurren Mahadeo A Sukhai Eunice E Cho Morris F Manolson Alessandro Datti Jeffrey Wrana Mark D Minden Rima Al-Awar Ahmed Aman Corey Nislow Guri Giaever Aaron D Schimmer
Affiliations

Affiliation

  • 1 Princess Margaret Cancer Centre, University Health Network, Rm 9-516, 610 University Ave, Toronto, ON, M5G 2M9, Canada.
Abstract

To identify new biological vulnerabilities in acute myeloid leukemia, we screened a library of Natural Products for compounds cytotoxic to TEX leukemia cells. This screen identified the novel small molecule Deoxysappanone B 7,4' dimethyl ether (Deox B 7,4), which possessed nanomolar anti-leukemic activity. To determine the anti-leukemic mechanism of action of Deox B 7,4, we conducted a genome-wide screen in Saccharomyces cerevisiae and identified enrichment of genes related to mitotic cell cycle as well as vacuolar acidification, therefore pointing to microtubules and vacuolar (V)-ATPase as potential drug targets. Further investigations into the mechanisms of action of Deox B 7,4 and a related analogue revealed that these compounds were reversible microtubule inhibitors that bound near the colchicine site. In addition, Deox B 7,4 and its analogue increased lysosomal V-ATPase activity and lysosome acidity. The effects on microtubules and lysosomes were functionally important for the anti-leukemic effects of these drugs. The lysosomal effects were characteristic of select microtubule inhibitors as only the Deox compounds and nocodazole, but not colchicine, vinca Alkaloids or paclitaxel, altered lysosome acidity and induced lysosomal disruption. Thus, our data highlight a new mechanism of action of select microtubule inhibitors on lysosomal function.

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