首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >Small ubiquitin-like modifier 3-modified proteome regulated by brain ischemia in novel small ubiquitin-like modifier transgenic mice: Putative protective proteins/pathways
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Small ubiquitin-like modifier 3-modified proteome regulated by brain ischemia in novel small ubiquitin-like modifier transgenic mice: Putative protective proteins/pathways

机译:新型小泛素样修饰物转基因小鼠中由脑缺血调节的小泛素样修饰物3-修饰的蛋白质组:推定的保护蛋白/途径

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BACKGROUND AND PURPOSE - : Small ubiquitin-like modifier (SUMO) conjugation is a post-translational modification associated with many human diseases. Characterization of the SUMO-modified proteome is pivotal to define the mechanistic link between SUMO conjugation and such diseases. This is particularly evident for SUMO2/3 conjugation, which is massively activated after brain ischemia/stroke, and is believed to be a protective response. The purpose of this study was to perform a comprehensive analysis of the SUMO3-modified proteome regulated by brain ischemia using a novel SUMO transgenic mouse. METHODS - : To enable SUMO proteomics analysis in vivo, we generated transgenic mice conditionally expressing tagged SUMO1-3 paralogues. Transgenic mice were subjected to 10 minutes forebrain ischemia and 1 hour of reperfusion. SUMO3-conjugated proteins were enriched by anti-FLAG affinity purification and analyzed by liquid chromatography-tandem mass spectrometry. RESULTS - : Characterization of SUMO transgenic mice demonstrated that all 3 tagged SUMO paralogues were functionally active, and expression of exogenous SUMOs did not modify the endogenous SUMOylation machinery. Proteomics analysis identified 112 putative SUMO3 substrates of which 91 candidates were more abundant in the ischemia group than the sham group. Data analysis revealed processes/pathways with putative neuroprotective functions, including glucocorticoid receptor signaling, RNA processing, and SUMOylation-dependent ubiquitin conjugation. CONCLUSIONS - : The identified proteins/pathways modulated by SUMOylation could be the key to understand the mechanisms linking SUMOylation to neuroprotection, and thus provide new promising targets for therapeutic interventions. The new transgenic mouse will be an invaluable platform for analyzing the SUMO-modified proteome in models of human disorders and thereby help to mechanistically link SUMOylation to the pathological processes.
机译:背景和目的-:小泛素样修饰物(SUMO)偶联是与许多人类疾病相关的翻译后修饰。 SUMO修饰的蛋白质组的表征对于定义SUMO缀合与此类疾病之间的机制联系至关重要。这对于SUMO2 / 3偶联特别明显,它在脑缺血/中风后被大量激活,并被认为是一种保护性反应。本研究的目的是使用新型SUMO转基因小鼠对脑缺血调节的SUMO3修饰的蛋白质组进行全面分析。方法-:为了能够在体内进行SUMO蛋白质组学分析,我们产生了有条件地表达标记的SUMO1-3旁系同源物的转基因小鼠。使转基因小鼠经历10分钟的前脑缺血和1小时的再灌注。 SUMO3偶联蛋白通过抗FLAG亲和纯化富集,并通过液相色谱-串联质谱分析。结果:SUMO转基因小鼠的特征表明,所有3个标记的SUMO旁系同源物都具有功能活性,并且外源SUMO的表达不会改变内源SUMO酰化机制。蛋白质组学分析确定了112个假定的SUMO3底物,其中91个候选物在缺血组比假手术组更丰富。数据分析显示具有假定的神经保护功能的过程/途径,包括糖皮质激素受体信号转导,RNA加工和SUMOylation依赖性泛素结合。结论-:经SUMOylation调节的已鉴定蛋白/途径可能是了解将SUMOylation与神经保护联系起来的机制的关键,从而为治疗干预提供了新的有希望的靶标。新型的转基因小鼠将成为分析人类疾病模型中SUMO修饰的蛋白质组的宝贵平台,从而有助于将SUMOylation与病理过程进行机械连接。

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