The nuclear export inhibitor aminoratjadone is a potent effector in extracellular-targeted drug conjugates

Philipp Klahn1,2, Verena Fetz1, Antje Ritter1

  • 1Department of Chemical Biology , Helmholtz Centre for Infection Research , Inhoffenstrasse 7 , 38124 Braunschweig , Germany .

Chemical Science
|June 14, 2019
PubMed

Insights

This study validates nuclear export inhibition as a novel drug conjugate effector mechanism. Targeted conjugates using folate and LHRH demonstrated potent cancer cell proliferation inhibition, proving this approach

Area of Science:

  • Oncology
  • Medicinal Chemistry
  • Molecular Biology

Background:

  • Targeted drug conjugates are clinically established in oncology.
  • Current cytotoxic payloads primarily target DNA or tubulin.
  • Nuclear export inhibition presents a novel effector principle for drug conjugates.

Purpose of the Study:

  • To validate nuclear export inhibition as a novel effector mechanism in targeted drug conjugates.
  • To develop a semisynthetic route for potent nuclear export inhibitors based on ratjadone A.
  • To demonstrate the efficacy of targeted drug conjugates utilizing nuclear export inhibition.

Main Methods:

  • Semisynthesis of ratjadone A analogues.
  • Biological evaluation of cytotoxicity against cancer cell lines.
  • Synthesis and testing of folate- and LHRH-targeted conjugates.
  • Assessment of nuclear export inhibition via CRM1 binding.

Main Results:

  • Ratjadone analogues (e.g., 16R-aminoratjadone, 19-oxoratjadone) exhibited high potency (pM to nM IC50 values).
  • Conjugates retained nuclear export inhibitory activity by binding CRM1.
  • Targeted conjugates (folate and LHRH) selectively inhibited receptor-positive cancer cell proliferation (nM IC50 values).

Conclusions:

  • Nuclear export inhibition is a viable and potent mode-of-action for drug conjugate payloads.
  • Extracellular targeting of cancer cells with nuclear export inhibitors is effective.
  • This approach offers a promising alternative to conventional cytotoxic payloads in oncology.

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