首页> 外文期刊>Molecular Neurobiology >Expression and Functional Relevance of Death-Associated Protein Kinase in Human Drug-Resistant Epileptic Brain: Focusing on the Neurovascular Interface
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Expression and Functional Relevance of Death-Associated Protein Kinase in Human Drug-Resistant Epileptic Brain: Focusing on the Neurovascular Interface

机译:死亡相关蛋白激酶在人体耐药癫痫大脑中的表达和功能相关性:专注于神经血管界面

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摘要

Death-associated protein kinase (DAPK) is a key player in various cell death signaling pathways. Prolonged seizures induce neuronal stress; thus, we studied DAPK expression in resected brain tissues from patients with refractory epilepsy and the pathophysiological relevance of neurovascular DAPK. We used brain resections from temporal lobe epilepsy (TLE), tumor (BT), arteriovenous malformation (AVM), and autopsy, and isolated human endothelial cells (EPI-ECs) and glial cells (EPIAstro) from epileptic brains compared to control brain endothelial cells (HBMECs) and astrocytes. DAPK and phosphorylated DAPK (p-DAPK) expression was evaluated by immunohistochemistry and western blot. Subcellular localization of DAPK in epileptic brain was explored; DAPK mRNA/protein levels in EPI-ECs/EPI-Astro were evaluated. We assessed DAPK localization with hypoxic inducible factor (HIF-1 alpha) and vascular endothelial growth factor (VEGF) in epilepsy, BT, and AVM. We found DAPK overexpression across neurons, microcapillaries, and astrocytes in TLE vs controls; DAPK and p-DAPK levels significantly increased only in microsomal fractions of epileptic brain. DAPK mRNA remained unchanged, although increased DAPK and p-DAPK protein expression was observed in EPI-ECs. DAPK inhibition reduced p-DAPK, HIF-1a, and VEGF expression, but increased cytotoxicity and decreased cell viability in EPI-ECs and EPI-astro vs. controls. DAPK staining in TLE resembled BTand AVM, with predominant DAPK/p-DAPK expression in neurons and vasculature. Taken together, these findings suggest DAPK could be a potential molecular target in neuronal death and vascular changes in epilepsy. Increased brain endothelial and astrocytic DAPK in epilepsy, identified for the first time, may have relevance to angiogenesis, hypoxia, and cell survival in pathological conditions.
机译:死亡相关的蛋白激酶(DAPK)是各种细胞死导途径中的关键球员。延长癫痫发作诱导神经元应力;因此,我们研究了来自难治性癫痫患者的切除脑组织中的DAPK表达以及神经血管平坦的病理生理学相关性。与对照脑内皮的对照组,我们使用从颞叶癫痫(TLE),肿瘤(BT),动静脉畸形(AVM)和尸检和脊髓细胞(EPIASTRO)和胶质细胞(EPIASTRO)的脑切除。细胞(HBMECs)和星形胶质细胞。通过免疫组织化学和蛋白质印迹评估DAPK和磷酸化的DAPK(P-DAPK)表达。探索了癫痫大脑中DAPK的亚细胞定位;评估EPI-EC / EPI-ASTRO中的DAPK mRNA /蛋白水平。我们评估了癫痫,BT和AVM中缺氧诱导因子(HIF-1α)和血管内皮生长因子(VEGF)的DAPK定位。我们在TLE对照中发现了跨神经元,微孔和星形胶质细胞的DAPK过度表达; DAPK和P-DAPK水平仅在癫痫大脑的微粒体级分中显着增加。 DAPK mRNA保持不变,尽管在EPI-ECS中观察到增加的DAPK和P-DAPK蛋白表达。 DAPK抑制降低了P-DAPK,HIF-1A和VEGF表达,但在EPI-EC和EPI-Astro对照中增加了细胞毒性和细胞活力下降。 DAPK染色在TLE中类似于BTAND AVM,具有神经元和血管系统中的主要DAPK / P-DAPK表达。在一起,这些发现表明DAPK可能是神经元死亡和癫痫血管变化的潜在分子靶标。增加脑内皮和星形织物DAPK在癫痫中第一次确定,可能与病理条件中的血管生成,缺氧和细胞存活有关。

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