Dual LSD1 and HDAC6 Inhibition Induces Doxorubicin Sensitivity in Acute Myeloid Leukemia Cells

Author:

Bulut IpekORCID,Lee Adam,Cevatemre BuseORCID,Ruzic DusanORCID,Belle RomanORCID,Kawamura AkaneORCID,Gul SherazORCID,Nikolic KatarinaORCID,Ganesan A.ORCID,Acilan CeydaORCID

Abstract

Defects in epigenetic pathways are key drivers of oncogenic cell proliferation. We developed a LSD1/HDAC6 multitargeting inhibitor (iDual), a hydroxamic acid analogue of the clinical candidate LSD1 inhibitor GSK2879552. iDual inhibits both targets with IC50 values of 540, 110, and 290 nM, respectively, against LSD1, HDAC6, and HDAC8. We compared its activity to structurally similar control probes that act by HDAC or LSD1 inhibition alone, as well as an inactive null compound. iDual inhibited the growth of leukemia cell lines at a higher level than GSK2879552 with micromolar IC50 values. Dual engagement with LSD1 and HDAC6 was supported by dose dependent increases in substrate levels, biomarkers, and cellular thermal shift assay. Both histone methylation and acetylation of tubulin were increased, while acetylated histone levels were only mildly affected, indicating selectivity for HDAC6. Downstream gene expression (CD11b, CD86, p21) was also elevated in response to iDual treatment. Remarkably, iDual synergized with doxorubicin, triggering significant levels of apoptosis with a sublethal concentration of the drug. While mechanistic studies did not reveal changes in DNA repair or drug efflux pathways, the expression of AGPAT9, ALOX5, BTG1, HIPK2, IFI44L, and LRP1, previously implicated in doxorubicin sensitivity, was significantly elevated.

Funder

Koç University School of Medicine

Koç University Research Center for Translational Medicine

Turkish Ministry of Health

UKRI Biotechnology and Biological Sciences Research Council

Norwich Research Park

Biosciences Doctoral Training Partnership

Ministry of Education, Science and Technological Development, Republic of Serbia

Cancer Research UK

European Research Council

EU COST Action CM1406 Epigenetic Chemical Biology

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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