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Synthesis, structure, and biological evaluation of a platinum-carbazole conjugate

  • Young Cheun
  • , Myong Chul Koag
  • , Youssef W. Naguib
  • , Hala Ouzon-Shubeita
  • , Zhengrong Cui
  • , Danaya Pakotiprapha
  • , Seongmin Lee
  • University of Texas at Austin
  • Faculty of Pharmacy
  • Mahidol University

Research output: Contribution to journalArticlepeer-review

5 Citations (Scopus)

Abstract

Cisplatin resistance is caused, in part, by the efficient removal of the helix-distorting cisplatin 1,2-intrastrand cross-links by nucleotide excision repair (NER) machinery. To make a platinum-DNA adduct that causes less helical distortion than the cisplatin 1,2-intrastrand adduct, we designed and synthesized a monofunctional platinum-carbazole conjugate (carbazoplatin). The 2.5 Å crystal structure of carbazoplatin-DNA adduct revealed both the monoplatination of the N7 of a guanine (G) base and the intercalation into two G:C base pairs, while causing a minor distortion of the DNA helix. A 50-mer dsDNA containing a single carbazoplatin lesion was poorly processed by UvrABC endonuclease, the prokaryotic NER machinery that detects helical distortion and performs dual incision around the lesion. Our cell viability assay indicated that the cytotoxic pathways of carbazoplatin might be different from those of cisplatin; carbazoplatin was 5–8 times more cytotoxic than cisplatin against PANC-1 and MDA-MB-231 cancer cell lines.

Original languageEnglish
Pages (from-to)116-125
Number of pages10
JournalChemical Biology and Drug Design
Volume91
Issue number1
DOIs
Publication statusPublished - Jan 2018
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • DNA damage
  • X-ray crystallography
  • cancer therapy
  • cisplatin
  • nucleotide excision repair

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