首页> 外文期刊>The journal of physiological sciences: JPS >Cross talk between 26S proteasome and mitochondria in human mesenchymal stem cells' ability to survive under hypoxia stress
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Cross talk between 26S proteasome and mitochondria in human mesenchymal stem cells' ability to survive under hypoxia stress

机译:在缺氧胁迫下,人间充质干细胞的26s蛋白酶体和线粒体之间的交叉谈话伴有26s蛋白酶体和线粒体的能力

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Mesenchymal stem cells (MSCs) are regarded as unique cells which play an imperative role in the field of regenerative medicine. They are characterized by the self-renewal capacity, multi-lineage differentiation abilities and immunomodulation properties which render them perfectly ideal cell type for treating a wide range of chronic diseases. Despite these enchanted features, there are many hurdles that need to be circumvented to ensure their long-term survival and viability after transplantation. Recently, hypoxia has been indicated as one of the most baffling stress conditions that can affect the survival rate of MSCs either positively or negatively depending on the level of hypoxia. MSCs can survive well under moderate hypoxia, but die shortly if they were exposed to severe hypoxia without clearly convincing explanation for this enigma. The current study reveals a novel mechanism of 26S proteasome in controlling the ability of BM-MSCs to withstand hypoxic stress by maintaining proper mitochondrial function. The results indicated that 26S proteasome remains functioning once BM- MSCs are exposed to moderate hypoxia (2.5%O-2) and preserves their survival and proliferation mediated by intact mitochondrial performance, whereas 26S proteasome becomes inactive when BM-MSCs faces severe hypoxia that lead to poor mitochondrial function and less chance to survive longer. The outcomes of this study demonstrated the importance of 26S proteasome machinery in enhancing the resistance of BM-MSCs to hypoxic stress condition which may help in better planning future studies that target this system. Graphic abstract Schematic representation summarizing the findings of the current study. 26S proteasome function preservation in normoxia and moderate hypoxia leads to maintain appropriate proliferation and mitochondrial activity in human BM-MSCs and promote their survival. On the opposite side, severe hypoxia disrupts the 26S proteasome function leading to significant reduction in the proliferation, survival and mitochondrial dynamics in human BM-MSCs causing their death.
机译:间充质干细胞(MSCs)被认为是在再生医学领域起到起到势不一性的独特细胞。它们的特征在于自我更新能力,多谱系分化能力和免疫调节性能,使它们完全理想的细胞类型用于治疗广泛的慢性疾病。尽管有这些迷人的功能,但有许多障碍需要规避,以确保移植后的长期存活率和活力。最近,缺氧已被指示为最令人困惑的胁迫条件之一,可以根据缺氧水平影响MSCs的生存率。 MSCs可以在适度的缺氧下生存良好,但如果他们暴露于严重缺氧,那么很快就会死亡,而不明确令人信服地解释这个谜团。目前的研究揭示了通过维持适当的线粒体功能来控制BM-MSCs抵抗缺氧应力的能力的26s蛋白酶的新机制。结果表明,一旦BM-MSCs暴露于中度缺氧(2.5%O-2),26S蛋白酶仍然运作并保留其通过完整线粒体性能介导的存活率和增殖,而当BM-MSCS面临严重的缺氧时,26S蛋白酶体变为无活性对线粒体差的功能差而不较少的机会生存更长时间。本研究的结果证明了26s蛋白酶体机械在提高BM-MSCs对缺氧应力条件的抗性方面的重要性,这可能有助于更好地规划靶向该系统的未来研究。图形抽象的示意图总结了当前研究的结果。 26S常氧蛋白酶体函数保存和中度缺氧导致人BM-MSCs中的适当增殖和线粒体活性,并促进其存活。在对面,严重的缺氧破坏了26s的蛋白酶体函数,导致人BM-MSCs的增殖,存活和线粒体动态的显着降低,导致其死亡。

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