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具有不同分子组成和蛋白水解活性的哺乳动物蛋白酶体亚群。

Mammalian proteasome subpopulations with distinct molecular compositions and proteolytic activities.

作者信息

Drews Oliver, Wildgruber Robert, Zong Chenggong, Sukop Ute, Nissum Mikkel, Weber Gerhard, Gomes Aldrin V, Ping Peipei

机构信息

Department of Physiology, Division of Cardiology, Cardiovascular Research Laboratories, David Geffen School of Medicine, University of California, Los Angeles, California 90095, USA.

出版信息

Mol Cell Proteomics. 2007 Nov;6(11):2021-31. doi: 10.1074/mcp.M700187-MCP200. Epub 2007 Jul 27.

Abstract

The proteasome-dependent protein degradation participates in multiple essential cellular processes. Modulation of proteasomal activities may alter cardiac function and disease phenotypes. However, cardiovascular studies reported thus far have yielded conflicting results. We hypothesized that a contributing factor to the contradicting literature may be caused by existing proteasome heterogeneity in the myocardium. In this investigation, we provide the very first direct demonstration of distinct proteasome subpopulations in murine hearts. The cardiac proteasome subpopulations differ in their molecular compositions and proteolytic activities. Furthermore they were distinguished from proteasome subpopulations identified in murine livers. The study was facilitated by the development of novel protocols for in-solution isoelectric focusing of multiprotein complexes in a laminar flow that support an average resolution of 0.04 pH units. Utilizing these protocols, the majority of cardiac proteasome complexes displayed an isoelectric point of 5.26 with additional subpopulations focusing in the range from pH 5.10 to 5.33. In contrast, the majority of hepatic 20 S proteasomes had a pI of 5.05 and focused from pH 5.01 to 5.29. Importantly proteasome subpopulations degraded specific model peptides with different turnover rates. Among cardiac subpopulations, proteasomes with an approximate pI of 5.21 showed 40% higher trypsin-like activity than those with pI 5.28. Distinct proteasome assembly may be a contributing factor to variations in proteolytic activities because proteasomes with pI 5.21 contained 58% less of the inducible subunit beta 2i compared with those with pI 5.28. In addition, dephosphorylation of 20 S proteasomes demonstrated that besides molecular composition posttranslational modifications largely contribute to their pI values. These data suggest the possibility of mixed 20 S proteasome assembly, a departure from the currently hypothesized two subpopulations: constitutive and immuno forms. The identification of multiple distinct proteasome subpopulations in heart provides key mechanistic insights for achieving selective and targeted regulation of this essential protein degradation machinery. Thus, proteasome subpopulations may serve as novel therapeutic targets in the myocardium.

摘要

蛋白酶体依赖性蛋白降解参与多种重要的细胞过程。蛋白酶体活性的调节可能会改变心脏功能和疾病表型。然而,迄今为止报道的心血管研究结果相互矛盾。我们推测,现有文献相互矛盾的一个促成因素可能是心肌中存在蛋白酶体异质性。在本研究中,我们首次直接证明了小鼠心脏中存在不同的蛋白酶体亚群。心脏蛋白酶体亚群在分子组成和蛋白水解活性方面存在差异。此外,它们与在小鼠肝脏中鉴定出的蛋白酶体亚群不同。本研究得益于一种新方法的开发,该方法用于在层流中对多蛋白复合物进行溶液内等电聚焦,平均分辨率可达0.04个pH单位。利用这些方法,大多数心脏蛋白酶体复合物的等电点为5.26,另有一些亚群聚焦在pH 5.10至5.33范围内。相比之下,大多数肝脏20S蛋白酶体的pI为5.05,聚焦范围为pH 5.01至5.29。重要的是,蛋白酶体亚群以不同的周转率降解特定的模型肽。在心脏亚群中,等电点约为5.21的蛋白酶体的胰蛋白酶样活性比等电点为5.28的蛋白酶体高40%。不同的蛋白酶体组装可能是蛋白水解活性变化的一个促成因素,因为与等电点为5.28的蛋白酶体相比,等电点为5.21的蛋白酶体所含的可诱导亚基β2i少58%。此外,20S蛋白酶体的去磷酸化表明,除了分子组成外,翻译后修饰在很大程度上也影响其pI值。这些数据表明存在混合20S蛋白酶体组装的可能性,这与目前假设的两种亚群(组成型和免疫型)不同。心脏中多种不同蛋白酶体亚群的鉴定为实现对这种重要蛋白降解机制的选择性和靶向调节提供了关键的机制见解。因此,蛋白酶体亚群可能成为心肌中的新型治疗靶点。

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