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Targetome analysis of chaperone-mediated autophagy in cancer cells

机译:癌细胞伴随伴侣介导的自噬的体靶组分析

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Chaperone-mediated autophagy (CMA) is a lysosomal degradation pathway of select soluble proteins. Nearly one-third of the soluble proteins are predicted to be recognized by this pathway, yet only a minor fraction of this proteome has been identified as CMA substrates in cancer cells. Here, we undertook a quantitative multiplex mass spectrometry approach to study the proteome of isolated lysosomes in cancer cells during CMA-activated conditions. By integrating bioinformatics analyses, we identified and categorized proteins of multiple cellular pathways that were specifically targeted by CMA. Beyond verifying metabolic pathways, we show that multiple components involved in select biological processes, including cellular translation, was specifically targeted for degradation by CMA. In particular, several proteins of the translation initiation complex were identified as bona fide CMA substrates in multiple cancer cell lines of distinct origin and we show that CMA suppresses cellular translation. We further show that the identified CMA substrates display high expression in multiple primary cancers compared to their normal counterparts. Combined, these findings uncover cellular processes affected by CMA and reveal a new role for CMA in the control of translation in cancer cells.
机译:伴侣介导的自噬(CMA)是选择可溶性蛋白质的溶酶体降解途径。预计该途径将识别出几乎三分之一的可溶性蛋白质,但该蛋白质组的一小部分已被鉴定为癌细胞中的CMA底物。在这里,我们进行了定量的多重质谱方法,以在CMA活化条件下研究癌细胞中分离的溶酶体的蛋白质组。通过整合生物信息学分析,我们鉴定了由CMA特异性靶向的多个细胞途径的蛋白质。除了验证代谢途径之外,我们表明选择生物过程中涉及的多种组分,包括细胞翻译,专门针对CMA降解。特别地,翻译初始复合物的几种蛋白质被鉴定为在不同起源的多种癌细胞系中的BOA FIE CMA底物,并且我们表明CMA抑制了细胞翻译。我们进一步表明,与其正常的对应物相比,所识别的CMA底物在多发性癌症中显示高表达。结合,这些发现发现受CMA影响的细胞过程,并揭示CMA在控制癌细胞中翻译中的新作用。

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