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肺癌细胞中伴侣介导的自噬对肿瘤抑制因子形式的 PED 的磷酸化调节降解。

Phosphorylation-regulated degradation of the tumor-suppressor form of PED by chaperone-mediated autophagy in lung cancer cells.

机构信息

Department of Molecular Medicine and Medical Biotechnology, "Federico II" University of Naples, Naples, Italy; Institute of Endocrinology and Experimental Oncology "G. Salvatore" (IEOS), Consiglio Nazionale delle Ricerche (CNR), Naples, Italy.

出版信息

J Cell Physiol. 2014 Oct;229(10):1359-68. doi: 10.1002/jcp.24569.

Abstract

PED/PEA-15 is a death effector domain (DED) family member with a variety of effects on cell growth and metabolism. To get further insight into the role of PED in cancer, we aimed to find new PED interactors. Using tandem affinity purification, we identified HSC70 (Heat Shock Cognate Protein of 70 kDa)-which, among other processes, is involved in chaperone-mediated autophagy (CMA)-as a PED-interacting protein. We found that PED has two CMA-like motifs (i.e., KFERQ), one of which is located within a phosphorylation site, and demonstrate that PED is a bona fide CMA substrate and the first example in which phosphorylation modifies the ability of HSC70 to access KFERQ-like motifs and target the protein for lysosomal degradation. Phosphorylation of PED switches its function from tumor suppression to tumor promotion, and we show that HSC70 preferentially targets the unphosphorylated form of PED to CMA. Therefore, we propose that the up-regulated CMA activity characteristic of most types of cancer cell enhances oncogenesis by shifting the balance of PED function toward tumor promotion. This mechanism is consistent with the notion of a therapeutic potential for targeting CMA in cancer, as inhibition of this autophagic pathway may help restore a physiological ratio of PED forms.

摘要

PED/PEA-15 是一种具有多种细胞生长和代谢效应的死亡效应结构域 (DED) 家族成员。为了更深入地了解 PED 在癌症中的作用,我们旨在寻找新的 PED 相互作用蛋白。通过串联亲和纯化,我们鉴定出 HSC70(热休克同源蛋白 70kDa)-除其他过程外,还参与伴侣介导的自噬(CMA)-作为 PED 相互作用蛋白。我们发现 PED 具有两个 CMA 样基序(即 KFERQ),其中一个位于磷酸化位点内,并证明 PED 是一种真正的 CMA 底物,也是第一个磷酸化修饰 HSC70 访问 KFERQ 样基序并将蛋白质靶向溶酶体降解的能力的例子。PED 的磷酸化将其功能从肿瘤抑制转变为肿瘤促进,我们表明 HSC70 优先将 PED 的未磷酸化形式靶向 CMA。因此,我们提出,大多数类型癌细胞中上调的 CMA 活性通过将 PED 功能的平衡向肿瘤促进转变来增强致癌作用。这种机制与在癌症中靶向 CMA 的治疗潜力的概念一致,因为抑制这种自噬途径可能有助于恢复 PED 形式的生理比例。

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