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聚合物-KLAK肽偶联物通过线粒体损伤和自噬阻断的协同作用诱导癌细胞死亡。

Polymer-KLAK Peptide Conjugates Induce Cancer Cell Death through Synergistic Effects of Mitochondria Damage and Autophagy Blockage.

作者信息

Qiao Zeng-Ying, Lai Wen-Jia, Lin Yao-Xin, Li Dan, Nan Xiao-Hui, Wang Yi, Wang Hao, Fang Qiao-Jun

机构信息

University of Chinese Academy of Sciences , Beijing 100049, PR China.

出版信息

Bioconjug Chem. 2017 Jun 21;28(6):1709-1721. doi: 10.1021/acs.bioconjchem.7b00176. Epub 2017 May 17.

DOI:10.1021/acs.bioconjchem.7b00176
PMID:28485595
Abstract

Nanoscaled polymer-peptide conjugates (PPCs) containing both functional peptides and synthetic polymer comprise a new family of biomaterials that can circumvent the limitation of peptides alone. Our previous work showed that PPCs with the therapeutic peptide KLAK, especially PPCs with shorter PEG spacers and a higher degree of polymerization, exhibit enhanced antitumor effects through disrupting mitochondrial membranes. However, as PPCs have a spherical nanostructure (45-60 nm), this may have other effects besides the conjugated therapeutic peptide KLAK itself when they enter cancer cells. In this research, we compared the proteome differences of U87 cells treated with KLAK, polymer, and their conjugates (P-KLAK) through quantitative proteomics technology. The result reveals that proteins involved in oxidative stress response and the Nrf2/ARE pathway were significantly up-regulated after P-KLAK treatment. Moreover, the overexpression of sequestosome 1, a protein substrate that is selectively incorporated into the formation of autophagosome and degraded by autophagy, is found in our study and has not been reported previously in the study of KLAK toxicity. Additional experiments suggest that upon endocytosis, P-KLAK causes lysosome impairment and results in autophagosomes accumulation. Hence, P-KLAK might induce U87 cell death by autophagy blockage due to lysosome impairment as well as mitochondria damage synergistically.

摘要

包含功能性肽和合成聚合物的纳米级聚合物 - 肽缀合物(PPC)构成了一类新型生物材料,能够克服单纯肽的局限性。我们之前的研究表明,含有治疗性肽KLAK的PPC,特别是具有较短聚乙二醇间隔基和较高聚合度的PPC,通过破坏线粒体膜表现出增强的抗肿瘤作用。然而,由于PPC具有球形纳米结构(45 - 60纳米),当它们进入癌细胞时,除了共轭治疗性肽KLAK本身外,可能还有其他影响。在本研究中,我们通过定量蛋白质组学技术比较了用KLAK、聚合物及其缀合物(P - KLAK)处理的U87细胞的蛋白质组差异。结果表明,P - KLAK处理后,参与氧化应激反应和Nrf2/ARE途径的蛋白质显著上调。此外,我们的研究发现了隔离体1的过表达,隔离体1是一种蛋白质底物,可选择性地参与自噬体的形成并通过自噬降解,且此前在KLAK毒性研究中尚未见报道。进一步的实验表明,内吞后,P - KLAK会导致溶酶体损伤并导致自噬体积累。因此,P - KLAK可能通过溶酶体损伤导致的自噬阻断以及线粒体损伤协同作用诱导U87细胞死亡。

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