Cancer cells modulate their metabolism, creating an acidic microenvironment that, in turn, can favor tumor progression and chemotherapy resistance. Tumor cells adopt strategies to survive a drop in extracellular pH (pHe). In the present manuscript, we investigated the contribution of mitochondrial sirtuin 3 (SIRT3) to the adaptation and survival of cancer cells to a low pHe. SIRT3-overexpressing and silenced breast cancer cells MDA-MB-231 and human embryonic kidney HEK293 cells were grown in buffered and unbuffered media at pH 7.4 and 6.8 for different times. mRNA expression of SIRT3 and CAVB, was measured by RT-PCR. Protein expression of SIRT3, CAVB and autophagy proteins was estimated by western blot. SIRT3-CAVB interaction was determined by immunoprecipitation and proximity ligation assays (PLA). Induction of autophagy was studied by western blot and TEM. SIRT3 overexpression increases the survival of both cell lines. Moreover, we demonstrated that SIRT3 controls intracellular pH (pHi) through the regulation of mitochondrial carbonic anhydrase VB (CAVB). Interestingly, we obtained similar results by using MC2791, a new SIRT3 activator. Our results point to the possibility of modulating SIRT3 to decrease the response and resistance of tumor cells to the acidic microenvironment and ameliorate the effectiveness of anticancer therapy.

Pharmacological Activation of SIRT3 Modulates the Response of Cancer Cells to Acidic pH / Aventaggiato, Michele; Arcangeli, Tania; Vernucci, Enza; Barreca, Federica; Sansone, Luigi; Pellegrini, Laura; Pontemezzo, Elena; Valente, Sergio; Fioravanti, Rossella; Antonio Russo, Matteo; Mai, Antonello; Tafani, Marco. - In: PHARMACEUTICALS. - ISSN 1424-8247. - 17:(2024). [10.3390/ph17060810]

Pharmacological Activation of SIRT3 Modulates the Response of Cancer Cells to Acidic pH

Michele Aventaggiato;Tania Arcangeli;Enza Vernucci;Federica Barreca;Laura Pellegrini;Sergio Valente;Rossella Fioravanti;Antonello Mai;Marco Tafani
2024

Abstract

Cancer cells modulate their metabolism, creating an acidic microenvironment that, in turn, can favor tumor progression and chemotherapy resistance. Tumor cells adopt strategies to survive a drop in extracellular pH (pHe). In the present manuscript, we investigated the contribution of mitochondrial sirtuin 3 (SIRT3) to the adaptation and survival of cancer cells to a low pHe. SIRT3-overexpressing and silenced breast cancer cells MDA-MB-231 and human embryonic kidney HEK293 cells were grown in buffered and unbuffered media at pH 7.4 and 6.8 for different times. mRNA expression of SIRT3 and CAVB, was measured by RT-PCR. Protein expression of SIRT3, CAVB and autophagy proteins was estimated by western blot. SIRT3-CAVB interaction was determined by immunoprecipitation and proximity ligation assays (PLA). Induction of autophagy was studied by western blot and TEM. SIRT3 overexpression increases the survival of both cell lines. Moreover, we demonstrated that SIRT3 controls intracellular pH (pHi) through the regulation of mitochondrial carbonic anhydrase VB (CAVB). Interestingly, we obtained similar results by using MC2791, a new SIRT3 activator. Our results point to the possibility of modulating SIRT3 to decrease the response and resistance of tumor cells to the acidic microenvironment and ameliorate the effectiveness of anticancer therapy.
2024
sirtuins; acidic microenvironment; autophagy; carbonic anhydrase; cancer
01 Pubblicazione su rivista::01a Articolo in rivista
Pharmacological Activation of SIRT3 Modulates the Response of Cancer Cells to Acidic pH / Aventaggiato, Michele; Arcangeli, Tania; Vernucci, Enza; Barreca, Federica; Sansone, Luigi; Pellegrini, Laura; Pontemezzo, Elena; Valente, Sergio; Fioravanti, Rossella; Antonio Russo, Matteo; Mai, Antonello; Tafani, Marco. - In: PHARMACEUTICALS. - ISSN 1424-8247. - 17:(2024). [10.3390/ph17060810]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1714682
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