首页> 外文期刊>The Journal of biological chemistry >Transient Aggregation of Ubiquitinated Proteins Is a Cytosolic Unfolded Protein Response to Inflammation and Endoplasmic Reticulum Stress
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Transient Aggregation of Ubiquitinated Proteins Is a Cytosolic Unfolded Protein Response to Inflammation and Endoplasmic Reticulum Stress

机译:泛素蛋白质的瞬时聚集是对炎症和内质网胁迫的细胞溶质展开蛋白质反应

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Failure to maintain protein homeostasis (proteostasis) leads to accumulation of unfolded proteins and contributes to the pathogenesis of many human diseases. Accumulation of unfolded proteins in the endoplasmic reticulum (ER) elicits unfolded protein response (UPR) that serves to attenuate protein translation, and increase protein refolding or degradation. In contrast to UPR in the ER, the regulatory molecules operative in cytosolic responses and their potential relation to ER stress are not well elucidated. Aggresome-like induced structures (ALIS) have been described as transient aggregation of ubiquitinated proteins in the cytosol. In this study, we show that cells respond to inflammation, infection or ER stress by cytosolic formation of ALIS, indicating that ALIS formation represents an early event in cellular adjustment to altered proteostasis that occurs under these conditions. This response was aided by rapid transcriptional up-regulation of polyubiqutin-binding protein p62. NF-κB and mTOR activation were also required for ALIS formation. Importantly, we show a cross talk between UPR in the ER and cytosolic ALIS. Down-regulation of ER UPR in XBP1 deficient cells increases cyotosolic ALIS formation. Furthermore, lysosomal activity but not macroautophagy is responsible for ALIS clearance. This study reveals the underlying regulatory mechanisms of ALIS formation and clearance, and provides a previously unrecognized common adaptive mechanism for cellular responses against inflammation and ER stress.
机译:未能维持蛋白质稳态(蛋白质)导致展开蛋白质的积累,并有助于许多人类疾病的发病机制。内质网(ER)中展开蛋白质的积累引发了用于衰减蛋白翻译的展开蛋白质反应(UPR),并增加蛋白质重折叠或降解。与ER中的UPR相反,在细胞溶质反应中携带的调节分子及其与ER应力的潜在关系并不迅速。纤维素样诱导的结构(ALIS)已被描述为胞质溶胶中泛素蛋白的瞬时聚集。在这项研究中,我们表明细胞通过Alis的细胞骨形成响应炎症,感染或ER应力,表明Alis形成代表细胞调节的早期事件,以改变在这些条件下发生的改变的蛋白质。通过快速转录的泛素素结合蛋白P62的转录上调辅助这种反应。 Alis形成还需要NF-κB和mTOR活化。重要的是,我们在ER和胞质溶胶中展示了UPR之间的交叉谈话。 XBP1缺陷细胞中ER UPR的下调增加了多核癌形成。此外,溶酶体活性但不是显微育药负责Alis间隙。本研究揭示了Alis形成和间隙的潜在调节机制,并为对炎症和ER应激的细胞反应提供了先前未被识别的常见自适应机制。

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