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UCHL1 的水解酶活性被废除会加剧小鼠创伤性脑损伤导致的轴突损伤和神经元死亡。

Abolishing UCHL1's hydrolase activity exacerbates TBI-induced axonal injury and neuronal death in mice.

机构信息

Geriatric Research Educational and Clinical Center, V.A. Pittsburgh Healthcare System, PA, USA; Department of Neurology, University of Pittsburgh School of Medicine, PA, USA.

Geriatric Research Educational and Clinical Center, V.A. Pittsburgh Healthcare System, PA, USA; Department of Neurosurgery, University of Pittsburgh, PA 15216, USA; Department of Critical Care Medicine, University of Pittsburgh, PA 15216, USA.

出版信息

Exp Neurol. 2021 Feb;336:113524. doi: 10.1016/j.expneurol.2020.113524. Epub 2020 Nov 4.

Abstract

Ubiquitin (Ub) C-terminal hydrolase L1 (UCHL1) is a multifunctional protein that is expressed in neurons throughout brain at high levels. UCHL1 deletion is associated with axonal degeneration, progressive sensory motor ataxia, and premature death in mice. UCHL1 has been hypothesized to play a role in the pathogenesis of neurodegenerative diseases and recovery after neuronal injury. UCHL1 hydrolyzes Ub from polyubiquitinated (poly-Ub) proteins, but also may ligate Ub to select neuronal proteins, and interact with cytoskeletal proteins. These and other mechanisms have been hypothesized to underlie UCHL1's role in neurodegeneration and response to brain injury. A UCHL1 knockin mouse containing a C90A mutation (C90A) devoid of hydrolase activity was constructed. The C90A mouse did not develop the sensory and motor deficits, degeneration of the gracile nucleus and tract, or premature death as seen in UCHL1 deficient mice. C90A and wild type (WT) mice were subjected to the controlled cortical impact (CCI) model of traumatic brain injury (TBI), and cell death, axonal injury and behavioral outcome were assessed. C90A mice exhibited decreased spared tissue volume, greater loss of CA1 hippocampal neurons and greater axonal injury as detected using anti-amyloid precursor protein (APP) antibody and anti- non-phosphorylated neurofilament H (SMI-32) antibody immunohistochemistry after CCI compared to WT controls. Poly-Ub proteins and Beclin-1 were elevated after CCI in C90A mice compared to WT controls. Vestibular motor deficits assessed using the beam balance test resolved by day 5 after CCI in WT mice but not in C90A mice. These results suggest that the hydrolase activity of UCHL1 does not account for the progressive neurodegeneration and premature death seen in mice that do not express full length UCHL1. The hydrolase activity of UCHL1 contributes to the function of the ubiquitin proteasome pathway (UPP), ameliorates activation of autophagy, and improves motor recovery after CCI. Thus, UCHL1 hydrolase activity plays an important role in acute injury response after TBI.

摘要

泛素 (Ub) C 端水解酶 L1 (UCHL1) 是一种多功能蛋白,在大脑中的神经元中高水平表达。UCHL1 的缺失与轴突变性、进行性感觉运动性共济失调和小鼠过早死亡有关。UCHL1 被假设在神经退行性疾病的发病机制和神经元损伤后的恢复中发挥作用。UCHL1 从多泛素化 (poly-Ub) 蛋白中水解 Ub,但也可能将 Ub 连接到选定的神经元蛋白上,并与细胞骨架蛋白相互作用。这些和其他机制被假设是 UCHL1 在神经退行性变和对脑损伤的反应中的作用基础。构建了一种含有缺乏水解酶活性的 C90A 突变 (C90A) 的 UCHL1 敲入小鼠。C90A 小鼠没有像 UCHL1 缺陷小鼠那样出现感觉和运动缺陷、薄束核和束变性或过早死亡。C90A 和野生型 (WT) 小鼠接受了控制性皮质撞击 (CCI) 创伤性脑损伤 (TBI) 模型,评估了细胞死亡、轴突损伤和行为结果。与 WT 对照相比,CCI 后 C90A 小鼠的 spared 组织体积减少,CA1 海马神经元丢失更多,使用抗淀粉样前体蛋白 (APP) 抗体和抗非磷酸化神经丝 H (SMI-32) 抗体免疫组化检测的轴突损伤更大。与 WT 对照相比,CCI 后 C90A 小鼠的多泛素蛋白和 Beclin-1 升高。CCI 后,WT 小鼠的前庭运动缺陷通过第 5 天的平衡木测试得到解决,但 C90A 小鼠则没有。这些结果表明,UCHL1 的水解酶活性并不能解释不表达全长 UCHL1 的小鼠中出现的进行性神经退行性变和过早死亡。UCHL1 的水解酶活性有助于泛素蛋白酶体途径 (UPP) 的功能,减轻自噬的激活,并改善 CCI 后的运动恢复。因此,UCHL1 水解酶活性在 TBI 后的急性损伤反应中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f55c/7855818/46d1f45ca425/nihms-1647993-f0001.jpg

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