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首页> 外文期刊>Neuropeptides: An International Journal >Characterization of endoproteolytic processing of dynorphins by proprotein convertases using mouse spinal cord S9 fractions and mass spectrometry
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Characterization of endoproteolytic processing of dynorphins by proprotein convertases using mouse spinal cord S9 fractions and mass spectrometry

机译:使用小鼠脊髓S9组分和质谱分析前蛋白转化酶对强啡肽的内蛋白水解过程进行表征

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摘要

Dynorphins are important neuropeptides with a central role in nociception and pain alleviation. Many mechanisms regulate endogenous dynorphin concentrations, including proteolysis. Proprotein convertases (PCs) are widely expressed in the central nervous system and specifically cleave at C-terminal of either a pair of basic amino acids, or a single basic residue. The proteolysis control of endogenous big dynorphin (BDyn) and dynorphin A (Dyn A) levels has a profound impact on pain perception and the role of PCs remain unclear. The objective of this study was to decipher the role of PC1 and PC2 in the proteolysis control of BDyn and Dyn A levels using cellular fractions of spinal cords from wild-type (WT), PC1(-/+) and PC2(-/+) animals and mass spectrometry. Our results clearly demonstrate that both PC1 and PC2 are involved in the proteolysis regulation of BDyn and Dyn A with a more important role for PC1. C-terminal processing of BDyn generates specific, peptide fragments dynorphin 1-19, dynorphin 1-13, dynorphin 1-11 and dynorphin 1-7, and C-terminal processing of Dyn A generates dynorphin 1-13, dynorphin 1-11 and dynorphin 1-7, all these peptide fragments are associated with PC1 or PC2 processing. Moreover, the proteolysis of BDyn leads to the formation of Dyn A and Leu-Enk, two important opioid peptides. The rate of formation of both is significantly reduced in cellular fractions of spinal cord mutant mice. As a consequence, even the partial inhibition of PC1 or PC2 may impair the endogenous opioid system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:强啡肽是重要的神经肽,在伤害感受和疼痛缓解中起重要作用。许多机制调节内源性强啡肽浓度,包括蛋白水解。前蛋白转化酶(PCs)在中枢神经系统中广泛表达,并在一对碱性氨基酸或单个碱性残基的C端特异性切割。内源性大强啡肽(BDyn)和强啡肽A(Dyn A)的蛋白水解控制对疼痛知觉有深远影响,并且PC的作用仍不清楚。这项研究的目的是利用野生型(WT),PC1(-/ +)和PC2(-/ +)的脊髓细胞级成分来解读PC1和PC2在BDyn和Dyn A水平蛋白水解控制中的作用。 )动物和质谱。我们的结果清楚地表明,PC1和PC2都参与了BDyn和Dyn A的蛋白水解调节,而PC1的作用更为重要。 BDyn的C端加工产生强肽1-19,强啡肽1-13,强啡肽1-11和强啡肽1-7的特异性肽片段,Dyn A的C端加工产生强啡肽1-13,强啡肽1-11和强啡肽强啡肽1-7,所有这些肽片段均与PC1或PC2加工相关。此外,BDyn的蛋白水解导致形成两个重要的阿片类肽Dyn A和Leu-Enk。在脊髓突变小鼠的细胞级分中,两者的形成速率均显着降低。结果,即使对PC1或PC2的部分抑制也可能损害内源性阿片样物质系统。 (C)2015 Elsevier Ltd.保留所有权利。

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