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Ca2+ overload- and ROS-associated mitochondrial dysfunction contributes to δ-tocotrienol-mediated paraptosis in melanoma cells

Michela Raimondi; Fabrizio Fontana; Monica Marzagalli; Matteo Audano; Giangiacomo Beretta; Patrizia Procacci; Patrizia Sartori; Nico Mitro; Patrizia Limonta
Apoptosis · Vol. 26, Issue 5-6 · pp. 277-292 · 2021

Abstract

Melanoma is an aggressive tumor with still poor therapy outcomes. δ-tocotrienol (δ-TT) is a vitamin E derivative displaying potent anti-cancer properties. Previously, we demonstrated that δ-TT triggers apoptosis in human melanoma cells. Here, we investigated whether it might also activate paraptosis, a non-canonical programmed cell death. In accordance with the main paraptotic features, δ-TT was shown to promote cytoplasmic vacuolization, associated with endoplasmic reticulum/mitochondrial dilation and protein synthesis, as well as MAPK activation in A375 and BLM cell lines. Moreover, treated cells exhibited a significant reduced expression of OXPHOS complex I and a marked decrease in oxygen consumption and mitochondrial membrane potential, culminating in decreased ATP synthesis and AMPK phosphorylation. This mitochondrial dysfunction resulted in ROS overproduction, found to be responsible for paraptosis induction. Additionally, δ-TT caused Ca 2+ homeostasis disruption, with endoplasmic reticulum-derived ions accumulating in mitochondria and activating the paraptotic signaling. Interestingly, by using both IP3R and VDAC inhibitors, a close cause-effect relationship between mitochondrial Ca 2+ overload and ROS generation was evidenced. Collectively, these results provide novel insights into δ-TT anti-melanoma activity, highlighting its ability to induce mitochondrial dysfunction-mediated paraptosis. Graphic Abstract δ-tocotrienol induces paraptotic cell death in human melanoma cells, causing endoplasmic reticulum dilation and mitochondrial swelling. These alterations induce an impairment of mitochondrial function, ROS production and calcium overload.

Bibliographic Information

JournalApoptosis
PublisherSpringer
Publication Date2021-06-01
Publication Year2021
Volume26
Issue5-6
Pages277-292
Document TypeJournal Article
Print ISSN1360-8185
eISSN1573-675X
DOI10.1007/s10495-021-01668-y

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NARA Access Coverage1996-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10495
Publisher PageOpen Publisher Page
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