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内侧颞叶癫痫患者海马体中蛋白质的改变

Altered Proteins in the Hippocampus of Patients with Mesial Temporal Lobe Epilepsy.

作者信息

Persike Daniele Suzete, Marques-Carneiro Jose Eduardo, Stein Mariana Leão de Lima, Yacubian Elza Marcia Targas, Centeno Ricardo, Canzian Mauro, Fernandes Maria José da Silva

机构信息

Departamento de Neurologia/Neurocirurgia, Escola Paulista de Medicina, Universidade Federal de São Paulo⁻UNIFESP, Rua Pedro de Toledo, 669, CEP, São Paulo 04039-032, Brazil.

Department of Medicinal Chemistry, College of Pharmacy, University of Dohuk-UoD, Kurdistan Region 1006AJ, Iraq.

出版信息

Pharmaceuticals (Basel). 2018 Sep 30;11(4):95. doi: 10.3390/ph11040095.

Abstract

Mesial temporal lobe epilepsy (MTLE) is usually associated with drug-resistant seizures and cognitive deficits. Efforts have been made to improve the understanding of the pathophysiology of MTLE for new therapies. In this study, we used proteomics to determine the differential expression of proteins in the hippocampus of patients with MTLE compared to control samples. By using the two-dimensional electrophoresis method (2-DE), the proteins were separated into spots and analyzed by LC-MS/MS. Spots that had different densitometric values for patients and controls were selected for the study. The following proteins were found to be up-regulated in patients: isoform 1 of serum albumin (ALB), proton ATPase catalytic subunit A (ATP6V1A), heat shock protein 70 (HSP70), dihydropyrimidinase-related protein 2 (DPYSL2), isoform 1 of myelin basic protein (MBP), and dihydrolipoamide S-acethyltransferase (DLAT). The protein isoform 3 of the spectrin alpha chain (SPTAN1) was down-regulated while glutathione S-transferase P (GSTP1) and protein DJ-1 (PARK7) were found only in the hippocampus of patients with MTLE. Interactome analysis of the nine proteins of interest revealed interactions with 20 other proteins, most of them involved with metabolic processes (37%), presenting catalytic activity (37%) and working as hydrolyses (25%), among others. Our results provide evidence supporting a direct link between synaptic plasticity, metabolic disturbance, oxidative stress with mitochondrial damage, the disruption of the blood⁻brain barrier and changes in CNS structural proteins with cell death and epileptogenesis in MTLE. Besides this, the presence of markers of cell survival indicated a compensatory mechanism. The over-expression of GSTP1 in MTLE could be related to drug-resistance.

摘要

内侧颞叶癫痫(MTLE)通常与药物难治性癫痫发作和认知缺陷相关。人们已努力增进对MTLE病理生理学的理解以开发新疗法。在本研究中,我们使用蛋白质组学来确定MTLE患者海马体中蛋白质与对照样本相比的差异表达。通过二维电泳方法(2-DE),蛋白质被分离成斑点并通过液相色谱-串联质谱(LC-MS/MS)进行分析。选择患者和对照具有不同光密度值的斑点进行研究。发现以下蛋白质在患者中上调:血清白蛋白(ALB)同工型1、质子ATP酶催化亚基A(ATP6V1A)、热休克蛋白70(HSP70)、二氢嘧啶酶相关蛋白2(DPYSL2)、髓鞘碱性蛋白(MBP)同工型1和二氢硫辛酰胺S-乙酰转移酶(DLAT)。血影蛋白α链(SPTAN1)的蛋白质同工型3下调,而谷胱甘肽S-转移酶P(GSTP1)和蛋白质DJ-1(PARK7)仅在MTLE患者的海马体中发现。对这九种感兴趣的蛋白质进行相互作用组分析揭示了它们与其他20种蛋白质的相互作用,其中大多数参与代谢过程(37%)、具有催化活性(37%)并作为水解酶起作用(25%)等。我们的结果提供了证据,支持在MTLE中突触可塑性、代谢紊乱、氧化应激与线粒体损伤、血脑屏障破坏以及中枢神经系统结构蛋白变化与细胞死亡和癫痫发生之间存在直接联系。除此之外,细胞存活标志物的存在表明存在一种代偿机制。MTLE中GSTP1的过表达可能与耐药性有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38f6/6316307/eca3ac05fa94/pharmaceuticals-11-00095-g001.jpg

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