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Mechanistic study of TRPM2-Ca(2+)-CAMK2-BECN1 signaling in oxidative stress-induced autophagy inhibition.
Wang, Qian; Guo, Wenjing; Hao, Baixia; Shi, Xianli; Lu, Yingying; Wong, Connie W M; Ma, Victor W S; Yip, Timothy T C; Au, Joseph S K; Hao, Quan; Cheung, King-Ho; Wu, Wutian; Li, Gui-Rong; Yue, Jianbo.
Afiliação
  • Wang Q; a Department of Biomedical Sciences , City University of Hong Kong , Hong Kong , China.
  • Guo W; a Department of Biomedical Sciences , City University of Hong Kong , Hong Kong , China.
  • Hao B; a Department of Biomedical Sciences , City University of Hong Kong , Hong Kong , China.
  • Shi X; a Department of Biomedical Sciences , City University of Hong Kong , Hong Kong , China.
  • Lu Y; a Department of Biomedical Sciences , City University of Hong Kong , Hong Kong , China.
  • Wong CW; b School of Biomedical Sciences, University of Hong Kong , Hong Kong , China.
  • Ma VW; c Department of Clinical Oncology , Queen Elizabeth Hospital , Kowloon, Hong Kong , China.
  • Yip TT; c Department of Clinical Oncology , Queen Elizabeth Hospital , Kowloon, Hong Kong , China.
  • Au JS; c Department of Clinical Oncology , Queen Elizabeth Hospital , Kowloon, Hong Kong , China.
  • Hao Q; b School of Biomedical Sciences, University of Hong Kong , Hong Kong , China.
  • Cheung KH; b School of Biomedical Sciences, University of Hong Kong , Hong Kong , China.
  • Wu W; b School of Biomedical Sciences, University of Hong Kong , Hong Kong , China.
  • Li GR; d GHM Institute of CNS regeneration, Jinan University , Guangzhou , China.
  • Yue J; e Xiamen Heart Center, Medical School of Xiamen University , Xiamen , China.
Autophagy ; 12(8): 1340-54, 2016 08 02.
Article em En | MEDLINE | ID: mdl-27245989
ABSTRACT
Reactive oxygen species (ROS) have been commonly accepted as inducers of autophagy, and autophagy in turn is activated to relieve oxidative stress. Yet, whether and how oxidative stress, generated in various human pathologies, regulates autophagy remains unknown. Here, we mechanistically studied the role of TRPM2 (transient receptor potential cation channel subfamily M member 2)-mediated Ca(2+) influx in oxidative stress-mediated autophagy regulation. On the one hand, we demonstrated that oxidative stress triggered TRPM2-dependent Ca(2+) influx to inhibit the induction of early autophagy, which renders cells more susceptible to death. On the other hand, oxidative stress induced autophagy (and not cell death) in the absence of the TRPM2-mediated Ca(2+) influx. Moreover, in response to oxidative stress, TRPM2-mediated Ca(2+) influx activated CAMK2 (calcium/calmodulin dependent protein kinase II) at levels of both phosphorylation and oxidation, and the activated CAMK2 subsequently phosphorylated BECN1/Beclin 1 on Ser295. Ser295 phosphorylation of BECN1 in turn decreased the association between BECN1 and PIK3C3/VPS34, but induced binding between BECN1 and BCL2. Clinically, acetaminophen (APAP) overdose is the most common cause of acute liver failure worldwide. We demonstrated that APAP overdose also activated ROS-TRPM2-CAMK2-BECN1 signaling to suppress autophagy, thereby causing primary hepatocytes to be more vulnerable to death. Inhibiting the TRPM2-Ca(2+)-CAMK2 cascade significantly mitigated APAP-induced liver injury. In summary, our data clearly demonstrate that oxidative stress activates the TRPM2-Ca(2+)-CAMK2 cascade to phosphorylate BECN1 resulting in autophagy inhibition.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Estresse Oxidativo / Canais de Cátion TRPM / Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina / Proteína Beclina-1 Limite: Animals / Humans / Male Idioma: En Revista: Autophagy Ano de publicação: 2016 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Estresse Oxidativo / Canais de Cátion TRPM / Proteína Quinase Tipo 2 Dependente de Cálcio-Calmodulina / Proteína Beclina-1 Limite: Animals / Humans / Male Idioma: En Revista: Autophagy Ano de publicação: 2016 Tipo de documento: Article País de afiliação: China