4.7 Article

Connexin 43 and Connexin 26 Involvement in the Ponatinib-Induced Cardiomyopathy: Sex-Related Differences in a Murine Model

期刊

出版社

MDPI
DOI: 10.3390/ijms22115815

关键词

connexin; heart; mouse model; ponatinib; Notch1; sex-dependent differences; cardiotoxicity

资金

  1. Incyte S.r.l.
  2. Ministero dell'Istruzione, Universita e Ricerca Scientifica [549901_2020_Madonna: Ateneo, 539901_2020_Mattii: Ateneo]

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Cardiac connexins play a crucial role in proper heart function by mediating electrical and chemical signaling. This study found that female mice are less affected by ponatinib-induced cardiac toxicity compared to males, indicating potential sex-specific adaptative responses.
Cardiac connexins (Cxs) are proteins responsible for proper heart function. They form gap junctions that mediate electrical and chemical signalling throughout the cardiac system, and thus enable a synchronized contraction. Connexins can also individually participate in many signal transduction pathways, interacting with intracellular proteins at various cellular compartments. Altered connexin expression and localization have been described in diseased myocardium and the aim of this study is to assess the involvement of Cx43, Cx26, and some related molecules in ponatinib-induced cardiac toxicity. Ponatinib is a new multi-tyrosine kinase inhibitor that has been successfully used against human malignancies, but its cardiotoxicity remains worrisome. Therefore, understanding its signaling mechanism is important to adopt potential anti cardiac damage strategies. Our experiments were performed on hearts from male and female mice treated with ponatinib and with ponatinib plus siRNA-Notch1 by using immunofluorescence, Western blotting, and proteomic analyses. The altered cardiac function and the change in Cxs expression observed in mice after ponatinib treatment, were results dependent on the Notch1 pathway and sex. Females showed a lower susceptibility to ponatinib than males. The downmodulation of cardiac Cx43, Cx26 and miR-122, high pS368-Cx43 phosphorylation, cell viability and survival activation could represent some of the female adaptative/compensatory reactions to ponatinib cardiotoxicity.

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