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钙蛋白酶-2介导 MBNL2 的降解和神经退行性变中的发育性 RNA 加工程序。

Calpain-2 Mediates MBNL2 Degradation and a Developmental RNA Processing Program in Neurodegeneration.

机构信息

Taiwan International Graduate Program in Interdisciplinary Neuroscience, National Yang Ming Chiao Tung University and Academia Sinica, Taipei, 11529, Taiwan.

Institute of Biomedical Sciences, Academia Sinica, Taipei, 11529, Taiwan.

出版信息

J Neurosci. 2022 Jun 22;42(25):5102-5114. doi: 10.1523/JNEUROSCI.2006-21.2022. Epub 2022 May 23.

Abstract

Increasing loss of structure and function of neurons and decline in cognitive function is commonly seen during the progression of neurologic diseases, although the causes and initial symptoms of individual diseases are distinct. This observation suggests a convergence of common degenerative features. In myotonic dystrophy type 1 (DM1), the expression of expanded CUG RNA induces neurotransmission dysfunction before axon and dendrite degeneration and reduced MBNL2 expression associated with aberrant alternative splicing. The role of loss of function of MBNL2 in the pathogenesis of neurodegeneration and the causal mechanism of neurodegeneration-reduced expression of MBNL2 remain elusive. Here, we show that increased MBNL2 expression is associated with neuronal maturation and required for neuronal morphogenesis and the fetal to adult developmental transition of RNA processing. Neurodegenerative conditions including NMDA receptor (NMDAR)-mediated excitotoxicity and dysregulated calcium homeostasis triggered nuclear translocation of calpain-2, thus resulting in MBNL2 degradation and reversal of MBNL2-regulated RNA processing to developmental patterns. Nuclear expression of calpain-2 resembled its developmental pattern and was associated with MBNL2 degradation. Knock-down of calpain-2 expression or inhibition of calpain-2 nuclear translocation prevented neurodegeneration-reduced MBNL2 expression and dysregulated RNA processing. Increased calpain-2 nuclear translocation associated with reduced MBNL2 expression and aberrant RNA processing occurred in models for DM1 and Alzheimer's disease (AD) including EpA960/CaMKII-Cre mice of either sex and female APP/PS1 and THY-Tau22 mice. Our results identify a regulatory mechanism for MBNL2 downregulation and suggest that calpain-2-mediated MBNL2 degradation accompanied by re-induction of a developmental RNA processing program may be a converging pathway to neurodegeneration. Neurologic diseases share many features during disease progression, such as cognitive decline and brain atrophy, which suggests a common pathway for developing degenerative features. Here, we show that the neurodegenerative conditions glutamate-induced excitotoxicity and dysregulated calcium homeostasis induced translocation of the cysteine protease calpain-2 into the nucleus, resulting in MBNL2 degradation and reversal of MBNL2-regulated RNA processing to an embryonic pattern. Knock-down or inhibition of nuclear translocation of calpain-2 prevented MBNL2 degradation and maintained MBNL2-regulated RNA processing in the adult pattern. Models of myotonic dystrophy and Alzheimer's disease (AD) also showed calpain-2-mediated MBNL2 degradation and a developmental RNA processing program. Our studies suggest MBNL2 function disrupted by calpain-2 as a common pathway, thus providing an alternative therapeutic strategy for neurodegeneration.

摘要

在神经退行性疾病的进展过程中,神经元结构和功能的逐渐丧失以及认知功能的下降是常见的现象,尽管个体疾病的病因和初始症状是不同的。这一观察结果表明存在共同的退行性特征的收敛。在 1 型肌强直性营养不良(DM1)中,扩展的 CUG RNA 的表达在轴突和树突退化以及与异常选择性剪接相关的 MBNL2 表达降低之前诱导神经传递功能障碍。MBNL2 功能丧失在神经退行性变发病机制中的作用以及神经退行性变-MBNL2 表达降低的因果机制仍不清楚。在这里,我们表明增加的 MBNL2 表达与神经元成熟有关,并且是神经元形态发生和 RNA 处理从胎儿到成人发育转变所必需的。神经退行性疾病包括 NMDA 受体(NMDAR)介导的兴奋性毒性和钙稳态失调,触发钙蛋白酶-2 的核易位,从而导致 MBNL2 降解并使 MBNL2 调节的 RNA 处理逆转回发育模式。钙蛋白酶-2 的核表达类似于其发育模式,并与 MBNL2 降解有关。钙蛋白酶-2 表达的敲低或核易位抑制可防止神经退行性变-MBNL2 表达降低和 RNA 处理失调。在包括 EpA960/CaMKII-Cre 雌雄小鼠和雌性 APP/PS1 和 THY-Tau22 小鼠在内的 DM1 和阿尔茨海默病(AD)模型中,观察到与 MBNL2 表达降低和异常 RNA 处理相关的增加的钙蛋白酶-2 核易位。我们的结果确定了 MBNL2 下调的调节机制,并表明钙蛋白酶-2 介导的 MBNL2 降解伴随着诱导发育性 RNA 处理程序的重新诱导可能是神经退行性变的共同途径。神经退行性疾病在疾病进展过程中有许多共同的特征,如认知能力下降和脑萎缩,这表明存在一种共同的途径来发展退行性特征。在这里,我们表明神经退行性疾病谷氨酸诱导的兴奋性毒性和钙稳态失调诱导半胱氨酸蛋白酶钙蛋白酶-2 易位到细胞核,导致 MBNL2 降解并使 MBNL2 调节的 RNA 处理逆转回胚胎模式。钙蛋白酶-2 的敲低或核易位抑制可防止 MBNL2 降解并维持成人模式的 MBNL2 调节的 RNA 处理。肌强直性营养不良和阿尔茨海默病(AD)模型也显示钙蛋白酶-2 介导的 MBNL2 降解和发育性 RNA 处理程序。我们的研究表明,钙蛋白酶-2 作为一种共同途径破坏 MBNL2 的功能,从而为神经退行性变提供了一种替代的治疗策略。

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