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Expression of the autophagy substrate SQSTM1/p62 is restored during prolonged starvation depending on transcriptional upregulation and autophagy- derived amino acids

机译:自噬底物SQSTM1 / p62的表达在长期饥饿中恢复,这取决于转录上调和自噬衍生的氨基酸

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SQSTM1/p62 (sequestosome 1) is a multifunctional signaling molecule, involved in a variety of cellular pathways. SQSTM1 is one of the best-known autophagic substrates, and is therefore widely used as an indicator of autophagic degradation. Here we report that the expression level of SQSTM1 can be restored during prolonged starvation. Upon starvation, SQSTM1 is initially degraded by autophagy. However, SQSTM1 is restored back to basal levels during prolonged starvation in mouse embryonic fibroblasts and HepG2 cells, but not in HeLa and HEK293 cells. Restoration of SQSTM1 depends on its transcriptional upregulation, which is triggered by amino acid starvation. Furthermore, amino acids derived from the autophagy-lysosome pathway are used for de novo synthesis of SQSTM1 under starvation conditions. The restoration of SQSTM1 is independent of reactivation of MTORC1 (mechanistic target of rapamycin complex 1). These results suggest that the expression level of SQSTM1 in starved cells is determined by at least 3 factors: autophagic degradation, transcriptional upregulation, and availability of lysosomal-derived amino acids. The results of this study also indicate that the expression level of SQSTM1 does not always inversely correlate with autophagic activity.
机译:SQSTM1 / p62(sequestosome 1)是一种多功能信号分子,参与多种细胞途径。 SQSTM1是最著名的自噬底物之一,因此被广泛用作自噬降解的指示剂。在这里,我们报告SQSTM1的表达水平可以在长期饥饿中恢复。饥饿时,SQSTM1首先被自噬降解。但是,在小鼠胚胎成纤维细胞和HepG2细胞中长期饥饿期间,SQSTM1恢复到基础水平,但在HeLa和HEK293细胞中却没有。 SQSTM1的恢复取决于其转录上调,这是由氨基酸饥饿引起的。此外,源自自噬-溶酶体途径的氨基酸在饥饿条件下用于SQSTM1的从头合成。 SQSTM1的恢复与MTORC1(雷帕霉素复合物1的机械靶标)的激活无关。这些结果表明,SQSTM1在饥饿细胞中的表达水平至少由3个因素决定:自噬降解,转录上调和溶酶体衍生氨基酸的可用性。这项研究的结果还表明SQSTM1的表达水平并不总是与自噬活性成反比。

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