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Characterization of Fully Recombinant Human 20S and 20S-PA200 Proteasome Complexes

机译:完全重组人20S和20S-PA200蛋白酶体复合物的表征

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摘要

Proteasomes are essential in all eukaryotic cells. However, their function and regulation remain considerably elusive, particularly those of less abundant variants. We demonstrate the human 20S proteasome recombinant assembly and confirmed the recombinant complex integrity biochemically and with a 2.6 angstrom resolution cryo-EM map. To assess its competence to form higher-order assemblies, we prepared and analyzed recombinant human 20S-PA200, a poorly characterized nuclear complex. Its 3.0 angstrom resolution cryo-EM structure reveals the PA200 unique architecture; the details of its intricate interactions with the proteasome, resulting in unparalleled proteasome a ring rearrangements; and the molecular basis for PA200 allosteric modulation of the proteasome active sites. Non-protein cryo-EM densities could be assigned to PA200-bound inositol phosphates, and we speculate regarding their functional role. Here we open extensive opportunities to study the fundamental properties of the diverse and distinct eukaryotic proteasome variants and to improve proteasome targeting under different therapeutic conditions.
机译:蛋白酶在所有真核细胞中都是必需的。然而,它们的功能和规则仍然难以捉摸,特别是那些变种较少的变种。我们证明了人20S蛋白酶体重组组件,并证实了重组复合体的生物化学和2.6埃分辨率Cryo-EM地图。为了评估其能力来形成高阶组件,我们制备和分析了重组人20S-PA200,其特征较差的核综合体。它的3.0埃克斯特罗姆决策Cryo-EM结构揭示了PA200独特的架构;其复杂的与蛋白酶相互作用的细节,导致无与伦比的蛋白酶环重排;和PA200的蛋白酶体活性位点的分子酸的分子基础。可以将非蛋白质冷冻 - EM密度分配给PA200结合的肌醇磷酸盐,我们推测其功能作用。在这里,我们开辟了广泛的机会,以研究多种和不同的真核蛋白酶体变体的基本性质,并在不同治疗条件下改善蛋白酶体靶向。

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