Investigator

H. Christian Eberl

Group Leader · Cellzome AG

HCEH. Christian Eberl
Papers(1)
Synergistic Effects o…
Collaborators(10)
James P. ReddingtonJoel KarpiakKatja RemlingerKeith H. JanssonKevin ColemanMarco L. HennrichMarcus BantscheffMaria Faelth-SavitskiMassimo PetretichPaola Grandi
Institutions(4)
Glaxosmithkline ChinaGlaxoSmithKline (Unit…GlaxoSmithKline (Unit…GlaxoSmithKline (Unit…

Papers

Synergistic Effects of PARP Inhibition and Cholesterol Biosynthesis Pathway Modulation

Abstract An in-depth multiomic molecular characterization of PARP inhibitors revealed a distinct poly-pharmacology of niraparib (Zejula) mediated by its interaction with lanosterol synthase (LSS), which is not observed with other PARP inhibitors. Niraparib, in a similar way to the LSS inhibitor Ro-48-8071, induced activation of the 24,25-epoxysterol shunt pathway, which is a regulatory signaling branch of the cholesterol biosynthesis pathway. Interestingly, the combination of an LSS inhibitor with a PARP inhibitor that does not bind to LSS, such as olaparib, had an additive effect on killing cancer cells to levels comparable with niraparib as a single agent. In addition, the combination of PARP inhibitors and statins, inhibitors of 3-hydroxy-3-methylglutaryl-coenzyme A reductase, an enzyme catalyzing the rate-limiting step in the mevalonate pathway, had a synergistic effect on tumor cell killing in cell lines and patient-derived ovarian tumor organoids. These observations suggest that concomitant inhibition of the cholesterol biosynthesis pathway and PARP activity might result in stronger efficacy of these inhibitors against tumor types highly dependent on cholesterol metabolism. Significance: The presented data indicate, to our knowledge, for the first time, the potential benefit of concomitant modulation of cholesterol biosynthesis pathway and PARP inhibition and highlight the need for further investigation to assess its translational relevance.

87Works
1Papers
30Collaborators

Positions

2016–

Group Leader

Cellzome AG

2013–

Investigator

Cellzome AG

Education

2013

PostDoc

Max-Planck-Institut für Biochemie · Proteomics and Signaltransduction

2012

PhD

Max-Planck-Institut für Biochemie · Proteomics and Signal Transduction

2008

Msc Biochemistry

Technical University Munich

2006

Bsc Biochemistry

Technical University Munich