Yuting Ding, Wenkang Luan, Xuanlin Shen, Zhe Wang, Yongjun Cao
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引用次数: 0
摘要
创伤性脑损伤(TBI)是阿尔茨海默病(AD)发病的重要风险因素之一。然而,创伤性脑损伤促进阿尔茨海默病进展的分子机制尚未阐明。在这项研究中,我们发现 E2F1 的异常产生是促进 TBI 后 AD 神经病理学和认知退化的一个主要因素。我们发现,反复轻度TBI可加重APP/PS1小鼠AD的神经病理变化。同时,在解剖小鼠海马时,E2F1和β位点APP裂解酶1(BACE1)的共表达上调。BACE1 被认为是 Aβ 生成的限速酶。在此,我们推测 E2F1 可能在促进 BACE1 在 AD 中的表达方面发挥作用。因此,我们收集了 AD 患者的外周血。有趣的是,E2F1与脑源性神经营养因子-反义(BDNF-AS)之间存在正相关,而BDNF-AS在AD中可促进BACE1的表达并表现出神经毒性效应。我们建立了一个细胞模型,发现E2F1与BDNF-AS之间存在调控关系。因此,基于我们的研究结果,我们得出结论:E2F1调控BDNF-AS,促进BACE1的表达,并影响AD的进展。此外,E2F1还介导了TBI诱导的AD神经毒性。
E2F1 Mediates Traumatic Brain Injury and Regulates BDNF-AS to Promote the Progression of Alzheimer’s Disease
Traumatic brain injury (TBI) is one of the important risk factors for the development of Alzheimer’s disease (AD). However, the molecular mechanism by which TBI promotes the progression of AD is not elucidated. In this study, we showed that the abnormal production of E2F1 is a major factor in promoting the neuropathological and cognitive deterioration of AD post-TBI. We found that repeated mild TBI can aggravate the neuropathology of AD in APP/PS1 mice. At the same time, the co-expression of E2F1 and beta-site APP cleaving enzyme 1 (BACE1) was upregulated when the mouse hippocampus was dissected. BACE1 is recognized as a rate-limiting enzyme for the production of Aβ. Here, we speculate that E2F1 may play a role in promoting BACE1 expression in AD. Therefore, we collected peripheral blood from patients with AD. Interestingly, there is a positive correlation between E2F1 and brain-derived neurotrophic factor–antisense (BDNF-AS), whereas BDNF-AS in AD can promote the expression of BACE1 and exhibit a neurotoxic effect. We established a cell model and found a regulatory relationship between E2F1 and BDNF-AS. Therefore, based on our results, we concluded that E2F1 regulates BDNF-AS, promotes the expression of BACE1, and affects the progression of AD. Furthermore, E2F1 mediates the TBI-induced neurotoxicity of AD.
期刊介绍:
Neurotoxicity Research is an international, interdisciplinary broad-based journal for reporting both basic and clinical research on classical neurotoxicity effects and mechanisms associated with neurodegeneration, necrosis, neuronal apoptosis, nerve regeneration, neurotrophin mechanisms, and topics related to these themes.
Published papers have focused on:
NEURODEGENERATION and INJURY
Neuropathologies
Neuronal apoptosis
Neuronal necrosis
Neural death processes (anatomical, histochemical, neurochemical)
Neurodegenerative Disorders
Neural Effects of Substances of Abuse
NERVE REGENERATION and RESPONSES TO INJURY
Neural Adaptations
Neurotrophin mechanisms and actions
NEURO(CYTO)TOXICITY PROCESSES and NEUROPROTECTION
Excitatory amino acids
Neurotoxins, endogenous and synthetic
Reactive oxygen (nitrogen) species
Neuroprotection by endogenous and exogenous agents
Papers on related themes are welcome.