4.6 Article

PINK1 Protects against Staurosporine-Induced Apoptosis by Interacting with Beclin1 and Impairing Its Pro-Apoptotic Cleavage

期刊

CELLS
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/cells11040678

关键词

PINK1; Beclin1; autophagy; apoptosis; neurodegeneration; cancer

资金

  1. CARIPLO Foundation [2017-0575]
  2. Italian Ministry of Health
  3. Luxembourg National Research Fund (FNR)
  4. PEARL program [FNR/P13/6682797]
  5. MiRisk-PD [C17/BM/11676395]

向作者/读者索取更多资源

In this study, a novel anti-apoptotic function of PINK1 was discovered, providing new options for treatment in proliferative or neurodegenerative diseases.
PINK1 is a causative gene for Parkinson's disease and the corresponding protein has been identified as a master regulator of mitophagy-the autophagic degradation of damaged mitochondria. It interacts with Beclin1 to regulate autophagy and initiate autophagosome formation, even outside the context of mitophagy. Several other pro-survival functions of this protein have been described and indicate that it might play a role in other disorders, such as cancer and proliferative diseases. In this study, we investigated a novel anti-apoptotic function of PINK1. To do so, we used SH-SY5Y neuroblastoma cells, a neuronal model used in Parkinson's disease and cancer studies, to characterize the pro-survival functions of PINK1 in response to the apoptosis inducer staurosporine. In this setting, we found that staurosporine induces apoptosis but not mitophagy, and we demonstrated that PINK1 protects against staurosporine-induced apoptosis by impairing the pro-apoptotic cleavage of Beclin1. Our data also show that staurosporine-induced apoptosis is preceded by a phase of enhanced autophagy, and that PINK1 in this context regulates the switch from autophagy to apoptosis. PINK1 protein levels progressively decrease after treatment, inducing this switch. The PINK1-Beclin1 interaction is crucial in exerting this function, as mutants that are unable to interact do not show the anti-apoptotic effect. We characterized a new anti-apoptotic function of PINK1 that could provide options for treatment in proliferative or neurodegenerative diseases.

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