Synthesis and new DNA targeting activity of 6- and 7-tert-butylfascaplysins

Author:

Dyshlovoy Sergey A.1,Mansour Wael Y.1,Ramm Natalia A.2,Hauschild Jessica1,Zhidkov Maxim E.2,Kriegs Malte1,Zielinski Alexandra1,Hoffer Konstantin1,Busenbender Tobias1,Glumakova Ksenia A.3,Spirin Pavel V.3,Prassolov Vladimir S.3,Tilki Derya1,Graefen Markus1,Bokemeyer Carsten1,Amsberg Gunhild1

Affiliation:

1. University Medical Center Hamburg-Eppendorf

2. FEFU Campus, Far Eastern Federal University

3. Engelhardt Institute of Molecular Biology

Abstract

Abstract Fascaplysin is a red cytotoxic pigment with anticancer properties isolated from the marine sponge Fascaplysinopsis sp.. Recently, structure-activity relationship analysis reported by our group suggested that selective cytotoxicity of fascaplysin derivatives towards tumor cells negatively correlates with their ability to intercalate into DNA. To validate this hypothesis, we synthesized 6- and 7-tert-butylfascaplysins which reveal mitigated DNA-intercalating properties. These derivatives were found to be strongly cytotoxic to drug-resistant human prostate cancer cells, albeit did not demonstrate improved selectivity towards cancer cells when compared to fascaplysin. At the same time, kinome analysis suggested an activation of CHK1/ATR axis in cancer cells shortly after the drug exposure. Further experiments revealed induction of replication stress that is eventually converted to the toxic DNA double-strand breaks, resulting in caspase-independent apoptosis-like cell death. Our observations highlight new DNA-targeting effect of some fascaplysin derivatives and indicate more complex structure-activity relationships within the fascaplysin family, suggesting that cytotoxicity and selectivity of these alkaloids are influenced by multiple factors. Furthermore, combination with clinically-approved inhibitors of ATR/CHK1 as well as testing in tumors particularly sensitive to the DNA damage should be considered in further studies.

Publisher

Research Square Platform LLC

Reference63 articles.

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