首页> 外文期刊>The Journal of biological chemistry >Suppression of Lysosome Function Induces Autophagy via a Feedback Down-regulation of MTOR Complex 1 (MTORC1) Activity
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Suppression of Lysosome Function Induces Autophagy via a Feedback Down-regulation of MTOR Complex 1 (MTORC1) Activity

机译:抑制溶酶体功能通过反馈诱导自噬诱导MTOR复合物1(MTORC1)活性的

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Autophagy can be activated via MTORC1 down-regulation by amino acid deprivation and by certain chemicals such as rapamycin, torin, and niclosamide. Lysosome is the degrading machine for autophagy but has also been linked to MTORC1 activation through the Rag/RRAG GTPase pathway. This association raises the question of whether lysosome can be involved in the initiation of autophagy. Toward this end, we found that niclosamide, an MTORC1 inhibitor, was able to inhibit lysosome degradation and increase lysosomal permeability. Niclosamide was ineffective in inhibiting MTORC1 in cells expressing constitutively activated Rag proteins, suggesting that its inhibitory effects were targeted to the Rag-MTORC1 signaling system. This places niclosamide in the same category of bafilomycin A1 and concanamycin A, inhibitors of the vacuolar H+-ATPase, for its dependence on Rag GTPase in suppression of MTORC1. Surprisingly, classical lysosome inhibitors such as chloroquine, E64D, and pepstatin A were also able to inhibit MTORC1 in a Rag-dependent manner. These lysosome inhibitors were able to activate early autophagy events represented by ATG16L1 and ATG12 puncta formation. Our work established a link between the functional status of the lysosome in general to the Rag-MTORC1 signaling axis and autophagy activation. Thus, the lysosome is not only required for autophagic degradation but also affects autophagy activation. Lysosome inhibitors can have a dual effect in suppressing autophagy degradation and in initiating autophagy.
机译:通过MTORC1通过MTORC1下调通过氨基酸剥夺和某些化学品,如雷帕霉素,雷霉菌和萘酰胺激活自噬。溶酶体是用于自噬的降解机,但也通过RAG / RRAG GTPase途径与MTORC1激活相关联。该关联提出了溶酶体是否可以参与自噬的问题。朝向目的,我们发现尼卡洛酰胺,MTORC1抑制剂能够抑制溶酶体降解并增加溶酶体渗透性。在表达组成型活化的RAG蛋白的细胞中抑制MTORC1,尼卡洛酰胺是无效的,这表明其抑制作用是针对RAG-MTORC1信号传导系统的抑制作用。这将萘酰胺在相同类别的Bafilomycin A1和甘氨酸H + -ATP酶的抑制剂中置于其抑制MTORC1中的粘性GTP酶的抑制剂。令人惊讶的是,典型的溶酶体抑制剂如氯喹,E64D和胃蛋白酶A还能够以粘依赖性方式抑制MTORC1。这些溶酶体抑制剂能够激活由ATG16L1和ATG12点形成的早期自噬事件。我们的作品一般于rag-mtorc1信令轴和自噬激活建立了溶酶体的功能状态之间的联系。因此,溶酶体不仅需要自噬降解,而且影响自噬激活。溶酶体抑制剂可以对抑制自噬降解和启动自噬具有双重作用。

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