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HSF1 critically attunes proteotoxic-stress sensing by mTORC1 to combat stress and promote growth

机译:HSF1严重调节mTORC1的蛋白毒性压力感测以对抗压力并促进生长

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摘要

To cope with proteotoxic stress, cells attenuate protein synthesis. However, the precise mechanisms underlying this fundamental adaptation remain poorly defined. Here we report that mTORC1 acts as an immediate cellular sensor of proteotoxic stress. Surprisingly, the multifaceted stress-responsive kinase JNK constitutively associates with mTORC1 under normal growth conditions. Upon activation by proteotoxic stress, JNK phosphorylates both RAPTOR at Ser863 and mTOR at Ser567, causing partial disintegration of mTORC1 and subsequent translation inhibition. Importantly, HSF1, the central player in the proteotoxic stress response (PSR), preserves mTORC1 integrity and function by inactivating JNK, independently of its canonical transcriptional action. Thereby, HSF1 translationally augments the PSR. Beyond promoting stress resistance, this intricate HSF1-JNK-mTORC1 interplay, strikingly, regulates cell, organ and body sizes. Thus, these results illuminate a unifying mechanism that controls stress adaptation and growth.
机译:为了应对蛋白毒性应激,细胞会减弱蛋白质的合成。但是,这种基本适应的精确机制仍未明确定义。在这里我们报告mTORC1充当蛋白毒性应激的直接细胞传感器。令人惊讶的是,在正常生长条件下,多方面的应激反应激酶JNK与mTORC1组成性缔合。通过蛋白毒性应激激活后,JNK将Ser863处的RAPTOR和Ser567处的mTOR磷酸化,从而引起mTORC1的部分崩解和随后的翻译抑制。重要的是,HSF1是蛋白毒性应激反应(PSR)的主要参与者,它通过使JNK失活来保持mTORC1的完整性和功能,而与它的规范转录作用无关。因此,HSF1在翻译上增强了PSR。 HSF1-JNK-mTORC1的复杂相互作用不仅增强了抗逆性,而且还调节细胞,器官和身体的大小。因此,这些结果阐明了控制压力适应和生长的统一机制。

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