Molecular insights into the unique properties of the blood-circulating proteasome

Yegor Leushkin, David Morgenstern, Shifra Ben-Dor, Rebecca Haffner-Krausz, Katharina Zittlau, Gili Ben-Nissan, Michal Sharon
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Abstract

Proteasomes are essential for protein degradation and maintaining cellular balance, yet their roles in extracellular fluids are not well understood. Our study investigates the freely circulating proteasome in blood, to uncover its unique molecular characteristics, compared to its intracellular counterparts. Using a transgenic mouse model, mass spectrometry, and biochemical tools, we show that the predominant proteasome in serum is the free uncapped 20S particle, which seems to assemble intracellularly before entering the bloodstream. This serum proteasome is composed of constitutive and immuno subunits and exhibits all three catalytic activities. Moreover, the complex displays distinct post-translational modifications, indicating specialization for extracellular roles, as demonstrated by its enhanced caspase-like activity. We also found that physiological stress significantly upregulates serum 20S proteasome levels, paralleling human data. This research highlights the specialized characteristics of circulating proteasomes, offering new insights into protein turnover in the blood with significant implications for understanding proteostasis beyond the intracellular environment.

Abstract Image

对血液循环蛋白酶体独特特性的分子见解。
蛋白酶体对蛋白质降解和维持细胞平衡至关重要,但它们在细胞外液中的作用尚不清楚。我们的研究调查了血液中自由循环的蛋白酶体,以揭示其与细胞内对应体相比的独特分子特征。通过转基因小鼠模型、质谱分析和生化工具,我们发现血清中主要的蛋白酶体是游离的无帽20S颗粒,它在进入血液之前似乎在细胞内组装。该血清蛋白酶体由组成亚基和免疫亚基组成,并表现出所有三种催化活性。此外,该复合物表现出明显的翻译后修饰,表明其细胞外作用的特化,正如其增强的caspase样活性所证明的那样。我们还发现生理应激显著上调血清20S蛋白酶体水平,与人类数据相似。这项研究强调了循环蛋白酶体的特殊特征,为血液中的蛋白质周转提供了新的见解,对理解细胞内环境之外的蛋白质停滞具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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