一种内部标准辅助合成和降解蛋白质组学方法揭示了乳腺癌细胞中 VPS4B 消耗与脂肪酸β氧化活化之间的潜在联系。

International journal of proteomics Pub Date : 2013-01-01 Epub Date: 2013-02-04 DOI:10.1155/2013/291415
Zhongping Liao, Stefani N Thomas, Yunhu Wan, H Helen Lin, David K Ann, Austin J Yang
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引用次数: 0

摘要

内体/溶酶体系统,尤其是转运所需的内体分选复合物(ESCRTs),在调节内吞受体及其相关信号分子的转运和去向方面起着至关重要的作用。最近,我们发现在缺氧条件下,与ESCRT-III相关的空泡蛋白分选4B(VPS4B)的功能障碍和下调可导致乳腺癌中表皮生长因子受体(EGFR)的异常聚集和EGFR信号的异常传递。然而,VPS4B 功能障碍的病理生理学后果在很大程度上仍然难以捉摸。在本研究中,我们采用了一种内部标准辅助合成和降解质谱(iSDMS)方法,该方法可直接测量蛋白质的合成、降解和蛋白质动态表达,以探讨VPS4B功能障碍在改变EGF介导的蛋白质表达方面的影响。我们的初步研究结果表明,下调 VPS4B 会降低许多参与糖酵解途径的蛋白质的表达,而在 VPS4B 缺失的细胞中,上调了在线粒体脂肪酸 β 氧化过程中发挥作用的蛋白质的表达。这一观察结果也与我们之前发现的缺氧可诱导VPS4B下调的结果一致,这表明采用脂肪酸β-氧化有可能成为乳腺癌细胞应对缺氧介导的VPS4B功能障碍的替代能源和生存机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Internal Standard-Assisted Synthesis and Degradation Proteomic Approach Reveals the Potential Linkage between VPS4B Depletion and Activation of Fatty Acid β-Oxidation in Breast Cancer Cells.

The endosomal/lysosomal system, in particular the endosomal sorting complexes required for transport (ESCRTs), plays an essential role in regulating the trafficking and destination of endocytosed receptors and their associated signaling molecules. Recently, we have shown that dysfunction and down-regulation of vacuolar protein sorting 4B (VPS4B), an ESCRT-III associated protein, under hypoxic conditions can lead to the abnormal accumulation of epidermal growth factor receptor (EGFR) and aberrant EGFR signaling in breast cancer. However, the pathophysiological consequences of VPS4B dysfunction remain largely elusive. In this study, we used an internal standard-assisted synthesis and degradation mass spectrometry (iSDMS) method, which permits the direct measurement of protein synthesis, degradation and protein dynamic expression, to address the effects of VPS4B dysfunction in altering EGF-mediated protein expression. Our initial results indicate that VPS4B down-regulation decreases the expression of many proteins involved in glycolytic pathways, while increased the expression of proteins with roles in mitochondrial fatty acid β-oxidation were up-regulated in VPS4B-depleted cells. This observation is also consistent with our previous finding that hypoxia can induce VPS4B down-regulated, suggesting that the adoption of fatty acid β-oxidation could potentially serve as an alternative energy source and survival mechanism for breast cancer cells in response to hypoxia-mediated VPS4B dysfunction.

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