Proteomics

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An organometallic gold(I) bis-N-heterocyclic carbene complex with a multimodal mode of action in ovarian cancer cells


ABSTRACT: The organometallic gold(I) bis-N-heterocyclic carbene complex [Au(9-methylcaffeine-8-ylidene)2]+ (AuTMX2) was previously shown to selectively and potently stabilise telomeric DNA G-quadruplex (G4) structures. This study sheds light onto the molecular reactivity and mode of action of AuTMX2 in the cellular context by using mass spectrometry-based shotgun proteomics in A2780 ovarian cancer cells. In contrast to other metal-based anticancer agents, this organogold compound showed a minor tendency for forming coordinative bonds and is expected to exert its drug effects mainly by non-covalent interactions. Global protein expression changes of treated cancer cells revealed a multi-modal mode of action of AuTMX2 by alterations in the nucleolus, telomeres, actin stress-fibers and stress-responses, which were further supported by pharmacological assays, fluorescence microscopy and cellular accumulation experiments.

INSTRUMENT(S): Q Exactive

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Epithelial Cell, Cell Culture

DISEASE(S): Malignant Neoplasm Of Ovary

SUBMITTER: Christopher Gerner  

LAB HEAD: Christopher Gerner

PROVIDER: PXD020560 | Pride | 2020-09-17

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
A2780_CYT_Au_1.mzML Mzml
A2780_CYT_Au_1.mzid.gz Mzid
A2780_CYT_Au_1.raw Raw
A2780_CYT_Au_2.mzML Mzml
A2780_CYT_Au_2.mzid.gz Mzid
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Publications

An Organometallic Gold(I) Bis-N-Heterocyclic Carbene Complex with Multimodal Activity in Ovarian Cancer Cells.

Meier-Menches Samuel M SM   Neuditschko Benjamin B   Zappe Katja K   Schaier Martin M   Gerner Marlene C MC   Schmetterer Klaus G KG   Del Favero Giorgia G   Bonsignore Riccardo R   Cichna-Markl Margit M   Koellensperger Gunda G   Casini Angela A   Gerner Christopher C  

Chemistry (Weinheim an der Bergstrasse, Germany) 20201103 67


The organometallic Au<sup>I</sup> bis-N-heterocyclic carbene complex [Au(9-methylcaffeine-8-ylidene)<sub>2</sub> ]<sup>+</sup> (AuTMX<sub>2</sub> ) was previously shown to selectively and potently stabilise telomeric DNA G-quadruplex (G4) structures. This study sheds light on the molecular reactivity and mode of action of AuTMX<sub>2</sub> in the cellular context using mass spectrometry-based methods, including shotgun proteomics in A2780 ovarian cancer cells. In contrast to other metal-based an  ...[more]

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