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Physiological levels of ATP negatively regulate proteasome function 被引量:4

Physiological levels of ATP negatively regulate proteasome function
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摘要 Intracellular protein degradation by the ubiquitin-proteasome system is ATP dependent, and the optimal ATP concentration to activate proteasome function in vitro is -100 μM. IntraceUular ATP levels are generally in the low millimolar range, but ATP at a level within this range was shown to inhibit proteasome peptidase activities in vitro. Here, we report new evidence that supports a hypothesis that intracellular ATP at the physiological levels bidirectionally regulates 26S proteasome proteolytic function in the cell. First, we confirmed that ATP exerted bidirectional regulation on the 26S proteasome in vitro, with the optimal ATP concentration (between 50 and 100μM) stimulating proteasome chymotrypsin-like activities. Second, we found that manipulating intracellular ATP levels also led to bidirectional changes in the levels of proteasome-specific protein substrates in cultured cells. Finally, measures to increase intracellular ATP enhanced, while decreasing intraceHular ATP attenuated the ability of proteasome inhibition to induce cell death. These data strongly suggest that endogenous ATP within the physiological concentration range can exert a negative impact on proteasome activities, allowing the cell to rapidly upregulate proteasome activity on ATP reduction under stress conditions.
出处 《Cell Research》 SCIE CAS CSCD 2010年第12期1372-1385,共14页 细胞研究(英文版)
基金 Acknowledgments This work was supported by the National High Technol- ogy Research and Development Program of China (Project 2006AA02Z4B5), the National Natural Science Foundation of China (Project 2010), and a Key Project (9251018201002) of Guangdong Province Natural Science Foundation (to JL). It was also supported in part by Grants HL072166, HL085629, and HL068936 of the NIH and an Established Investigator Award (0740025N) of the American Heart Association (to XW).
关键词 ATP PROTEASOME REGULATION APOPTOSIS 26S蛋白酶体 ATP浓度 蛋白水平 生理 负调节 三磷酸腺苷 双向调节 细胞内
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  • 1Hershko A, Ciechanover A. The ubiquitin system. Annu Rev Biochem 1998; 67:425-479.
  • 2Mizushima N, Levine B, Cuervo AM, Klionsky DJ. Autophagy fights disease through cellular self-digestion. Nature 2008; 451:1069-I 075.
  • 3Korolchuk VI, Mansilla A, Menzies FM, Rubinsztein DC. Autophagy inhibition compromises degradation of nhiquitinproteasome pathway substrates. Mol Cell 2009; 33:517-527.
  • 4Besche HC, Peth A, Goldberg AL. Getting to first base in proteasome assembly. Cell 2009; 138:25-28.
  • 5Smith DM, Kafri G, Cheng Y, Ng D, Walz T, Goldberg AL. ATP binding to PAN or the 26S ATPases causes association with the 20S proteasome, gate opening, and translocation of unfolded proteins. Mol Cell 2005; 20:687-698.
  • 6Liu CW, Li X, Thompson D, et al. ATP binding and ATP hydrolysis play distinct roles in the function of 26S proteasorne. Mol Cell 2006; 24:39-50.
  • 7Asher G, Bercovich Z, Tsvetkov P, Shaul Y, Kahana C. 20S proteasomal degradation of ornithine decarboxylase is regulated by NQO1. Mol Cell 2005; 17:645-655.
  • 8Davies KJ, Degradation of oxidized proteins by the 20S proteasome. Biochimie 2001 ; 83:301-310.
  • 9Ravid T, Hochstrasser M. Diversity of degradation signals in the ubiquitin-proteasome system. Nat Rev Mol Cell Bio12008; 9:679-690.
  • 10Zhang F, Hu Y, Huang P, Toleman CA, Paterson A J, Kudlow JE. Proteasome function is regulated by cyclic AMP-depen- dent protein kinase through phosphorylation of Rpt6. J Biol Chem 2007; 282:22460-22471.

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