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首页> 外文期刊>Cell metabolism >Identification of AMPK Phosphorylation Sites Reveals a Network of Proteins Involved in Cell Invasion and Facilitates Large-Scale Substrate Prediction
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Identification of AMPK Phosphorylation Sites Reveals a Network of Proteins Involved in Cell Invasion and Facilitates Large-Scale Substrate Prediction

机译:AMPK磷酸化位点的鉴定揭示了参与细胞侵袭的蛋白质网络,并有助于大规模的底物预测。

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摘要

AMP-activated protein kinase (AMPK) is a central energy gauge that regulates metabolism and has been increasingly involved in non-metabolic processes and diseases. However, AMPK's direct substrates in non-metabolic contexts are largely unknown. To better understand the AMPK network, we use a chemical genetics screen coupled to a peptide capture approach in whole cells, resulting in identification of direct AMPK phosphorylation sites. Interestingly, the high-confidence AMPK substrates contain many proteins involved in cell motility, adhesion, and invasion. AMPK phosphorylation of the RHOA guanine nucleotide exchange factor NET1A inhibits extracellular matrix degradation, an early step in cell invasion. The identification of direct AMPK phosphorylation sites also facilitates large-scale prediction of AMPK substrates. We provide an AMPK motif matrix and a pipeline to predict additional AMPK substrates from quantitative phosphoproteomics datasets. As AMPK is emerging as a critical node in aging and pathological processes, our study identifies potential targets for therapeutic strategies.
机译:AMP激活蛋白激酶(AMPK)是调节新陈代谢的主要能量计量器,越来越多地参与非代谢过程和疾病。但是,在非代谢环境中AMPK的直接底物在很大程度上是未知的。为了更好地了解AMPK网络,我们使用化学遗传学筛选技术结合全细胞中的肽捕获方法,从而鉴定出直接的AMPK磷酸化位点。有趣的是,高可信度的AMPK底物包含许多与细胞运动,粘附和侵袭有关的蛋白质。 RHOA鸟嘌呤核苷酸交换因子NET1A的AMPK磷酸化抑制细胞外基质降解,这是细胞入侵的早期步骤。直接AMPK磷酸化位点的鉴定也有助于AMPK底物的大规模预测。我们提供了AMPK基序矩阵和从定量磷酸化蛋白质组学数据集中预测其他AMPK底物的管道。随着AMPK逐渐成为衰老和病理过程中的关键节点,我们的研究确定了治疗策略的潜在靶标。

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