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A therapeutic dose of doxorubicin activates ubiquitin-proteasome system-mediated proteolysis by acting on both the ubiquitination apparatus and proteasome

机译:治疗剂量的阿霉素可通过作用于泛素化装置和蛋白酶体来激活泛素-蛋白酶体系统介导的蛋白水解作用

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A therapeutic dose of doxorubicin activates ubiquitin-proteasome system-mediated proteolysis by acting on both the ubiquitination apparatus and proteasome. Am J Physiol Heart Circ Physiol 295: H2541-H2550, 2008; doi:10.1152/ajpheart.01052.2008.-The ubiquitin proteasome system (UPS) degrades abnormal proteins and most unneeded normal proteins, thereby playing a critical role in protein homeostasis in the cell. Proteasome inhibition is effective in treating certain forms of cancer, while UPS dysfunction is increasingly implicated in the pathogenesis of many severe and yet common diseases. It has been previously shown that doxorubicin (Dox) enhances the degradation of a UPS surrogate substrate in mouse hearts. To address the underlying mechanism, in the present study, we report that 1) Dox not only enhances the degradation of an exogenous UPS reporter (GFPu) but also antagonizes the proteasome inhibitor-induced accumulation of endogenous substrates (e.g., P-catenin and c-Jun) of the UPS in cultured NIH 3T3 cells and cardiomyocytes; 2) Dox facilitates the in vitro degradation of GFPu and c-Jun by the reconstituted UPS via the enhancement of proteasomal function; 3) Dox at a therapeutically relevant dose directly stimulates the peptidase activities of purified 20S proteasomes; and 4) Dox increases, whereas proteasome inhibition decreases, E3 ligase COOH-terminus of heat shock protein cognate 70 in 3T3 cells via a posttranscriptional mechanism. These new findings suggest that Dox activates the UPS by acting directly on both the ubiquitination apparatus and proteasome#
机译:治疗剂量的阿霉素可通过作用于泛素化装置和蛋白酶体来激活泛素-蛋白酶体系统介导的蛋白水解作用。 Am J Physiol心脏Circ Physiol 295:H2541-H2550,2008; doi:10.1152 / ajpheart.01052.2008.-泛素蛋白酶体系统(UPS)降解异常蛋白质和大多数不需要的正常蛋白质,从而在细胞内蛋白质稳态中发挥关键作用。蛋白酶体抑制可有效治疗某些形式的癌症,而UPS功能障碍越来越多地牵涉到许多严重且常见的疾病的发病机理中。先前已证明阿霉素(Dox)增强了小鼠心脏中UPS替代底物的降解。为了解决潜在的机制,在本研究中,我们报告1)Dox不仅增强了外源UPS报告基因(GFPu)的降解,而且还拮抗了蛋白酶体抑制剂诱导的内源性底物(例如P-catenin和c -Jun)培养的NIH 3T3细胞和心肌细胞中的UPS; 2)Dox通过增强蛋白酶体功能促进重组的UPS在体外降解GFPu和c-Jun; 3)与治疗有关的剂量的Dox直接刺激纯化的20S蛋白酶体的肽酶活性; 4)Dox增加,而蛋白酶体抑制减少,通过转录后机制在3T3细胞中热休克蛋白同源70的E3连接酶COOH末端。这些新发现表明Dox通过直接作用于泛素化装置和蛋白酶体来激活UPS。

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