首页> 美国卫生研究院文献>Biology of Reproduction >Quantitative Proteomics Analysis of VEGF-Responsive Endothelial Protein S-Nitrosylation Using Stable Isotope Labeling by Amino Acids in Cell Culture (SILAC) and LC-MS/MS
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Quantitative Proteomics Analysis of VEGF-Responsive Endothelial Protein S-Nitrosylation Using Stable Isotope Labeling by Amino Acids in Cell Culture (SILAC) and LC-MS/MS

机译:使用细胞培养中的氨基酸(SILAC)和LC-MS / MS对氨基酸进行稳定同位素标记的VEGF反应性内皮蛋白S-亚硝基化的定量蛋白质组学分析

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摘要

Adduction of a nitric oxide moiety (NO•) to cysteine(s), termed S-nitrosylation (SNO), is a novel mechanism for NO to regulate protein function directly. However, the endothelial SNO-protein network that is affected by endogenous and exogenous NO is obscure. This study was designed to develop a quantitative proteomics approach using stable isotope labeling by amino acids in cell culture for comparing vascular endothelial growth factor (VEGFA)- and NO donor-responsive endothelial nitroso-proteomes. Primary placental endothelial cells were labeled with “light” (L-12C614N4-Arg and L-12C614N2-Lys) or “heavy” (L-13C615N4-Arg and L-13C615N2-Lys) amino acids. The light cells were treated with an NO donor nitrosoglutathione (GSNO, 1 mM) or VEGFA (10 ng/ml) for 30 min, while the heavy cells received vehicle as control. Equal amounts of cellular proteins from the light (GSNO or VEGFA treated) and heavy cells were mixed for labeling SNO-proteins by the biotin switch technique and then trypsin digested. Biotinylated SNO-peptides were purified for identifying SNO-proteins by liquid chromatography-tandem mass spectrometry (LC-MS/MS). Ratios of light to heavy SNO-peptides were calculated for determining the changes of the VEGFA- and GSNO-responsive endothelial nitroso-proteomes. A total of 387 light/heavy pairs of SNO-peptides were identified, corresponding to 213 SNO-proteins that include 125 common and 27 VEGFA- and 61 GSNO-responsive SNO-proteins. The specific SNO-cysteine(s) in each SNO-protein were simultaneously identified. Pathway analysis revealed that SNO-proteins are involved in various endothelial functions, including proliferation, motility, metabolism, and protein synthesis. We collectively conclude that endogenous NO on VEGFA stimulation and exogenous NO from GSNO affect common and different SNO-protein networks, implicating SNO as a critical mechanism for VEGFA stimulation of angiogenesis.
机译:一氧化氮部分(NO•)加到半胱氨酸上的过程称为S-亚硝基化(SNO),是NO直接调节蛋白质功能的新机制。然而,受内源性和外源性NO影响的内皮SNO-蛋白质网络是模糊的。这项研究旨在开发一种定量蛋白质组学方法,该方法利用细胞培养物中氨基酸的稳定同位素标记来比较血管内皮生长因子(VEGFA)-和NO供体反应性内皮亚硝基蛋白质组。胎盘内皮细胞标记有“光”(L- 12 C6 14 N4-Arg和L- 12 C6 14 < / sup> N2-Lys)或“沉重”(L- 13 C6 15 N4-Arg和L- 13 C6 15 N2-Lys)氨基酸。轻细胞用NO供体亚硝基谷胱甘肽(GSNO,1 mM)或VEGFA(10 ng / ml)处理30分钟,而重细胞则接受媒介物作为对照。通过生物素转换技术将来自轻细胞(经GSNO或VEGFA处理)和重细胞的等量细胞蛋白混合以标记SNO蛋白,然后消化胰蛋白酶。纯化生物素化的SNO肽,通过液相色谱-串联质谱(LC-MS / MS)鉴定SNO蛋白。计算轻与重SNO-肽的比例,以确定VEGFA-和GSNO-应答性内皮亚硝基蛋白质组的变化。总共鉴定出387对轻/重SNO肽对,对应于213种SNO蛋白,其中包括125种常见,27种VEGFA和61种GSNO反应性SNO蛋白。同时鉴定每个SNO-蛋白中的特定SNO-半胱氨酸。途径分析表明,SNO蛋白参与多种内皮功能,包括增殖,运动,代谢和蛋白质合成。我们共同得出结论,内源性NO对VEGFA刺激和外源性NO来自GSNO影响共同的和不同的SNO蛋白网络,这暗示SNO是VEGFA刺激血管生成的关键机制。

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