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Discovery of Ro 41-0960, a Non-Steroidal Inhibitor of the Na+/K+-ATPase

AI Summary
  • Ro 41-0960 is a non-steroidal Na+/K+-ATPase inhibitor, IC50 17.9 ±1.1 µM (purified) and 10.3 ±1.1 µM in microsomes.
  • Inhibition is ATP-dependent and non-monotonic; modelling suggests binding to both cardiotonic steroid pocket and nucleotide-binding site, not purely ATP-competitive.
  • Compound shows weak SERCA inhibition (IC50 >100 µM) and no electrophysiological changes in human iPSC-derived cardiomyocytes at near-maximal NKA inhibition, indicating favourable cardiac safety.
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ChemMedChem. 2026 Sep 14;21(17):e70442. doi: 10.1002/cmdc.70442.

ABSTRACT

The Na+/K+-ATPase (NKA) is a central regulator of cardiac ion homeostasis and a validated target for heart failure. Yet, cardiotonic steroids used in clinical practice are limited by a narrow therapeutic window and pro-arrhythmic effects. Here, we identify Ro 41-0960 as a non-steroidal inhibitor of NKA with a distinct mechanistic profile. The compound inhibits NKA activity with IC50 values of 17.9 ± 1.1 µM for purified enzyme and 10.3 ± 1.1 µM in microsomal preparations. ATP-dependent activity measurements revealed a non-monotonic response in which inhibition was most pronounced at ATP concentrations below 4 mM and diminished at the highest ATP concentrations tested. Docking and molecular dynamics simulations suggest that Ro 41-0960 can access both the cardiotonic steroid-binding pocket and the nucleotide-binding site; however, the ATP-dependence data are not consistent with a simple ATP-competitive mechanism. Furthermore, the compound shows only weak inhibition of SERCA (IC50 > 100 µM) and does not alter electrophysiological parameters in human iPSC-derived cardiomyocytes at concentrations producing near-maximal NKA inhibition, providing initial evidence of a favorable cardiac safety profile. Together, these findings identify Ro 41-0960 as an NKA inhibitor with a distinct chemical scaffold and provide a framework for the development of non-steroidal NKA modulators.

PMID:42665555 | DOI:10.1002/cmdc.70442

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