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Loss of malin, but not laforin, results in compromised autophagic flux and proteasomal dysfunction in cells exposed to heat shock

机译:失去马林酸而不是laforin会导致热休克细胞的自噬通量受损和蛋白酶体功能异常

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Heat stress to a cell leads to the activation of heat shock response, which is required for the management of misfolded and unfolded proteins. Macroautophagy and proteasome-mediated degradation are the two cellular processes that degrade polyubiquitinated, misfolded proteins. Contrasting pieces of evidence exist on the effect of heat stress on the activation of the above-mentioned degradative pathways. Laforin phosphatase and malin E3 ubiquitin ligase, the two proteins defective in Lafora neurodegenerative disorder, are involved in cellular stress response pathways and are required for the activation of heat shock transcription factor - the heat shock factor 1 (HSF1)?- and, consequently, for cellular protection under heat shock. While the role of laforin and malin in the proteolytic pathways is well established, their role in cellular recovery from heat shock was not explored. To address this, we investigated autophagic flux, proteasomal activity, and the level of polyubiquitinated proteins in Neuro2a cells partially silenced for laforin or malin protein and exposed to heat shock. We found that heat shock was able to induce autophagic flux, proteasomal activity and reduce the polyubiquitinated proteins load in the laforin-silenced cells but not in the malin-deficient cells. Loss of malin leads to reduced proteasomal activity in the heat-shocked cells. Taken together, our results suggest a distinct mode of action for laforin and malin in the heat shock-induced proteolytic processes.
机译:对细胞的热应激导致热休克反应的激活,这对于错误折叠和未折叠的蛋白质的处理是必需的。巨噬细胞自噬和蛋白酶体介导的降解是降解多泛素化,错误折叠蛋白的两个细胞过程。关于热应力对上述降解途径的激活的影响存在相反的证据。 Lafora神经退行性疾病中的两个缺陷蛋白Laforin磷酸酶和malin E3泛素连接酶参与细胞应激反应途径,并且是激活热激转录因子-HSE1所必需的-,因此,热冲击下的细胞保护。尽管laforin和malin在蛋白水解途径中的作用已得到充分确立,但尚未探讨它们在热休克引起的细胞恢复中的作用。为了解决这个问题,我们研究了Laforin或malin蛋白部分沉默并暴露于热激的Neuro2a细胞中的自噬通量,蛋白酶体活性和多泛素化蛋白的水平。我们发现,热激能够诱导自噬通量,蛋白酶体活性并减少在拉孔蛋白沉默的细胞中而不是在马林缺乏的细胞中的多泛素化蛋白负载。苹果酸的损失导致热休克细胞中蛋白酶体活性降低。两者合计,我们的结果表明,在热激诱导的蛋白水解过程中,laforin和malin具有独特的作用方式。

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