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Proteomic analysis of S-nitrosylated nuclear proteins in rat cortical neurons

机译:大鼠皮质神经元中S-亚硝基化核蛋白的蛋白质组学分析

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摘要

Neurons modulate gene expression in response to extrinsic signals to enable brain development, cognition, and learning and to process stimuli that regulate systemic physiological functions. This signal-to-gene communication is facilitated by posttranslational modifications such as S-nitrosylation, the covalent attachment of a nitric oxide (NO) moiety to cysteine thiols. In the cerebral cortex, S-nitrosylation of histone deacetylase 2 (HDAC2) is required for gene transcription during neuronal development, but few other nuclear targets of S-nitrosylation have been identified to date. We used S-nitrosothiol resin-assisted capture on NO donor-treated nuclear extracts from rat cortical neurons and identified 614 S-nitrosylated nuclear proteins. Of these, 131 proteins have not previously been shown to be S-nitrosylated in any system, and 555 are previously unidentified targets of S-nitrosylation in neurons. The sites of S-nitrosylation were identified for 59% of the targets, and motifs containing single lysines were found at 33% of these sites. In addition, lysine motifs were necessary for promoting the S-nitrosylation of HDAC2 and methyl-CpG binding protein 3 (MBD3). Moreover, S-nitrosylation of the histone-binding protein RBBP7 was necessary for dendritogenesis of cortical neurons in culture. Together, our findings characterize S-nitrosylated nuclear proteins in neurons and identify S-nitrosylation motifs that may be shared with other targets of NO signaling.
机译:神经元响应外部信号来调节基因表达,以使大脑发育,认知和学习并处理调节全身生理功能的刺激。翻译后修饰(例如S-亚硝基化,一氧化氮(NO)部分与半胱氨酸硫醇的共价连接)促进了这种信号与基因的交流。在大脑皮层中,组蛋白脱乙酰基酶2(HDAC2)的S-亚硝基化对于神经元发育过程中的基因转录是必需的,但迄今为止,几乎没有其他S-亚硝基化的核靶标被确定。我们使用S-亚硝基硫醇树脂辅助捕获了来自大鼠皮层神经元的NO供体处理的核提取物,并鉴定了614个S-亚硝基化的核蛋白。其中,以前没有在任何系统中显示131种蛋白质被S-亚硝化,而在神经元中,555种蛋白质先前未被鉴定为S-亚硝化的靶标。对于59%的靶标,确定了S-亚硝基化的位点,在这些位点的33%处发现了包含单个赖氨酸的基序。另外,赖氨酸基序对于促进HDAC2和甲基CpG结合蛋白3(MBD3)的S-亚硝基化是必需的。此外,组蛋白结合蛋白RBBP7的S-亚硝基化对于培养中皮层神经元的树突形成是必需的。总之,我们的发现表征了神经元中的S-亚硝基化核蛋白,并确定了可能与NO信号转导的其他靶点共享的S-亚硝基化基序。

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