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Utilization of fluorescent probes for the quantification and identification of subcellular proteomes and biological processes regulated by lipid peroxidation products

机译:利用荧光探针对脂质过氧化产物调节亚细胞蛋白质蛋白质和生物过程的定量和鉴定

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摘要

Oxidative modifications to cellular proteins are critical in mediating redox-sensitive processes such as autophagy, the antioxidant response, and apoptosis. The proteins that become modified by reactive species are often compartmentalized to specific organelles or regions of the cell. Here, we detail protocols for identifying the subcellular protein targets of lipid oxidation and for linking protein modifications with biological responses such as autophagy. Fluorophores such as BODIPY-labeled arachidonic acid or BODIPY-conjugated electrophiles can be paired with organelle-specific probes to identify specific biological processes and signaling pathways activated in response to oxidative stress. In particular, we demonstrate “negative” and “positive” labeling methods using BODIPY-tagged reagents for examining oxidative modifications to protein nucleophiles. The protocol describes the use of these probes in slot immunoblotting, quantitative western blotting, in-gel fluorescence, and confocal microscopy techniques. In particular, the use of the BODIPY fluorophore with organelle- or biological process-specific dyes and chromophores is highlighted. These methods can be used in multiple cell types as well as isolated organelles to interrogate the role of oxidative modifications in regulating biological responses to oxidative stress.
机译:细胞蛋白的氧化修饰在介导氧化还原敏感过程(例如自噬,抗氧化反应和凋亡)中至关重要。被反应性物种修饰的蛋白质通常被分隔到特定的细胞器或细胞区域。在这里,我们详细介绍了用于识别脂质氧化的亚细胞蛋白靶标以及将蛋白修饰与生物学反应(例如自噬)联系起来的协议。可以将荧光体(例如BODIPY标记的花生四烯酸或BODIPY偶联的亲电体)与细胞器特异性探针配对,以识别响应于氧化应激而激活的特定生物学过程和信号通路。特别是,我们展示了使用带有BODIPY标签的试剂检测蛋白质亲核蛋白的氧化修饰的“阴性”和“阳性”标记方法。该协议描述了这些探针在狭缝免疫印迹,定量蛋白质印迹,凝胶内荧光和共聚焦显微镜技术中的用途。尤其强调了BODIPY荧光团与细胞器或生物过程特定的染料和生色团的结合。这些方法可用于多种细胞类型以及分离的细胞器中,以研究氧化修饰在调节对氧化应激的生物反应中的作用。

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