Cdk5 inhibition in the SOD1G93A transgenic mouse model of amyotrophic lateral sclerosis suppresses neurodegeneration and extends survival

IF 4.2 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Neurochemistry Pub Date : 2024-06-27 DOI:10.1111/jnc.16160
Ahwon Kim, Do-Yeon Lee, Jung-Joon Sung
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Abstract

Deregulated cyclin-dependent kinase 5 (Cdk5) activity closely correlates with hyperphosphorylated tau, a common pathology found in neurodegenerative diseases. Previous postmortem studies had revealed increased Cdk5 immunoreactivity in amyotrophic lateral sclerosis (ALS); hence, we investigated the effects of Cdk5 inhibition on ALS model mice and neurons in this study. For the in vitro study, motor neuron cell lines with wild-type superoxide dismutase 1 (SOD1) or SOD1G93A and primary neuronal cultures from SOD1G93A transgenic (TG) mice or non-TG mice were compared for the expression of proteins involved in tau pathology, neuroinflammation, apoptosis, and neuritic outgrowth by applying Cdk5-small interfering RNA or Cdk5-short hairpin RNA (shRNA). For the in vivo study, SOD1G93A mice and non-TG mice were intrathecally injected with adeno-associated virus 9 (AAV9)-scramble (SCR)-shRNA or AAV9-Cdk5-shRNA at the age of 5 weeks. Weight and motor function were measured three times per week from 60 days of age, longevity was evaluated, and the tissues were collected from 90-day-old or 120-day-old mice. Neurons with SOD1G93A showed increased phosphorylated tau, attenuated neuritic growth, mislocalization of SOD1, and enhanced neuroinflammation and apoptosis, all of which were reversed by Cdk5 inhibition. Weights did not show significant differences among non-TG and SOD1G93A mice with or without Cdk5 silencing. SOD1G93A mice treated with AAV9-Cdk5-shRNA showed significantly delayed disease onset, delayed rotarod failure, and prolonged survival compared with those treated with AAV9-SCR-shRNA. The brain and spinal cord of SOD1G93A mice intrathecally injected with AAV9-Cdk5-shRNA exhibited suppressed tau pathology, neuroinflammation, apoptosis, and an increased number of motor neurons compared to those of SOD1G93A mice injected with AAV9-SCR-shRNA. Cdk5 inhibition could be an important mechanism in the development of a new therapeutic strategy for ALS.

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在肌萎缩性脊髓侧索硬化症 SOD1G93A 转基因小鼠模型中抑制 Cdk5 可抑制神经变性并延长存活时间。
细胞周期蛋白依赖性激酶5(Cdk5)活性失调与高磷酸化tau密切相关,而高磷酸化tau是神经退行性疾病中常见的病理现象。此前的尸检研究显示,肌萎缩性脊髓侧索硬化症(ALS)患者的 Cdk5 免疫活性增加;因此,我们在本研究中探讨了抑制 Cdk5 对 ALS 模型小鼠和神经元的影响。在体外研究中,通过应用 Cdk5 小干扰 RNA 或 Cdk5 短发夹 RNA(shRNA),比较了野生型超氧化物歧化酶 1(SOD1)或 SOD1G93A 的运动神经元细胞系以及 SOD1G93A 转基因(TG)小鼠或非 TG 小鼠的原代神经元培养物中涉及 tau 病理学、神经炎症、细胞凋亡和神经突起的蛋白质的表达。在体内研究中,SOD1G93A小鼠和非TG小鼠在5周龄时鞘内注射腺相关病毒9(AAV9)-scramble(SCR)-shRNA或AAV9-Cdk5-shRNA。从小鼠出生 60 天起,每周测量三次小鼠的体重和运动功能,评估小鼠的寿命,并从出生 90 天或 120 天的小鼠身上采集组织。带有 SOD1G93A 的神经元显示磷酸化 tau 增加、神经生长减弱、SOD1 错定位、神经炎症和细胞凋亡增强,所有这些症状都被 Cdk5 抑制剂逆转。无论是否抑制 Cdk5,非 TG 小鼠和 SOD1G93A 小鼠的体重均无明显差异。与接受 AAV9-SCR-shRNA 治疗的小鼠相比,接受 AAV9-Cdk5-shRNA 治疗的 SOD1G93A 小鼠发病时间明显推迟,转体失败时间推迟,存活时间延长。与注射AAV9-SCR-shRNA的SOD1G93A小鼠相比,鞘内注射AAV9-Cdk5-shRNA的SOD1G93A小鼠的大脑和脊髓显示出抑制了tau病理、神经炎症、细胞凋亡和运动神经元数量的增加。Cdk5抑制可能是开发ALS新疗法的一个重要机制。
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来源期刊
Journal of Neurochemistry
Journal of Neurochemistry 医学-神经科学
CiteScore
9.30
自引率
2.10%
发文量
181
审稿时长
2.2 months
期刊介绍: Journal of Neurochemistry focuses on molecular, cellular and biochemical aspects of the nervous system, the pathogenesis of neurological disorders and the development of disease specific biomarkers. It is devoted to the prompt publication of original findings of the highest scientific priority and value that provide novel mechanistic insights, represent a clear advance over previous studies and have the potential to generate exciting future research.
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