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Istaroxime stimulates SERCA2a and accelerates calcium cycling in heart failure by relieving phospholamban inhibition
Authors:Mara Ferrandi  Paolo Barassi  Francesco Tadini-Buoninsegni  Gianluca Bartolommei  Isabella Molinari  Maria Grazia Tripodi  Cristina Reina  Maria Rosa Moncelli  Giuseppe Bianchi  Patrizia Ferrari
Institution:1.Prassis Sigma-Tau Research Institute, Settimo Milanese, Milan, Italy;2.University of Florence, Sesto Fiorentino, Florence, Italy;3.San Raffaele Hospital, University Vita-Salute, Milan, Italy;4.CVie Therapeutics, Hong Kong, China
Abstract:

Background and Purpose

Calcium handling is known to be deranged in heart failure. Interventions aimed at improving cell Ca2+ cycling may represent a promising approach to heart failure therapy. Istaroxime is a new luso-inotropic compound that stimulates cardiac contractility and relaxation in healthy and failing animal models and in patients with acute heart failure (AHF) syndrome. Istaroxime is a Na-K ATPase inhibitor with the unique property of increasing sarcoplasmic reticulum (SR) SERCA2a activity as shown in heart microsomes from humans and guinea pigs. The present study addressed the molecular mechanism by which istaroxime increases SERCA2a activity.

Experimental Approach

To study the effect of istaroxime on SERCA2a-phospholamban (PLB) complex, we applied different methodologies in native dog healthy and failing heart preparations and heterologous canine SERCA2a/PLB co-expressed in Spodoptera frugiperda (Sf21) insect cells.

Key Results

We showed that istaroxime enhances SERCA2a activity, Ca2+ uptake and the Ca2+-dependent charge movements into dog healthy and failing cardiac SR vesicles. Although not directly demonstrated, the most probable explanation of these activities is the displacement of PLB from SERCA2a.E2 conformation, independently from cAMP/PKA. We propose that this displacement may favour the SERCA2a conformational transition from E2 to E1, thus resulting in the acceleration of Ca2+ cycling.

Conclusions and Implications

Istaroxime represents the first example of a small molecule that exerts a luso-inotropic effect in the failing human heart through the stimulation of SERCA2a ATPase activity and the enhancement of Ca2+ uptake into the SR by relieving the PLB inhibitory effect on SERCA2a in a cAMP/PKA independent way.
Keywords:heart failure  istaroxime  SERCA  sarcoplasmic reticulum Ca2+ ATPase  phospholamban  inotropy  lusitropy  calcium uptake  charge measurements
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