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首页> 外文期刊>Molecular & cellular proteomics: MCP >Endogenous peptide discovery of the rat circadian clock: a focused study of the suprachiasmatic nucleus by ultrahigh performance tandem mass spectrometry.
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Endogenous peptide discovery of the rat circadian clock: a focused study of the suprachiasmatic nucleus by ultrahigh performance tandem mass spectrometry.

机译:大鼠昼夜节律钟的内源性肽发现:超高性能串联质谱法对裂chi上核的重点研究。

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摘要

Understanding how a small brain region, the suprachiasmatic nucleus (SCN), can synchronize the body's circadian rhythms is an ongoing research area. This important time-keeping system requires a complex suite of peptide hormones and transmitters that remain incompletely characterized. Here, capillary liquid chromatography and FTMS have been coupled with tailored software for the analysis of endogenous peptides present in the SCN of the rat brain. After ex vivo processing of brain slices, peptide extraction, identification, and characterization from tandem FTMS data with <5-ppm mass accuracy produced a hyperconfident list of 102 endogenous peptides, including 33 previously unidentified peptides, and 12 peptides that were post-translationally modified with amidation, phosphorylation, pyroglutamylation, or acetylation. This characterization of endogenous peptides from the SCN will aid in understanding the molecular mechanisms that mediate rhythmic behaviors in mammals.
机译:认识大脑小区域上眼交叉核(SCN)如何同步人体的昼夜节律是一个持续的研究领域。这个重要的计时系统需要一套复杂的肽激素和递质,其特征仍不完整。在这里,毛细管液相色谱和FTMS已与量身定制的软件相结合,用于分析大鼠脑SCN中存在的内源性肽。在对脑片进行离体处理后,从串联FTMS数据中提取肽,鉴定和表征,质量准确度小于5 ppm,从而产生了102个内源肽的高度自信列表,其中包括33个先前未鉴定的肽和12个经过翻译后修饰的肽酰胺化,磷酸化,焦谷氨酰化或乙酰化。来自SCN的内源肽的这种特征将有助于理解介导哺乳动物节律行为的分子机制。

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