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大脑中解整合素/金属蛋白酶 ADAM10 的产后破坏可导致癫痫发作、学习缺陷、脊柱形态改变和突触功能缺陷。

Postnatal disruption of the disintegrin/metalloproteinase ADAM10 in brain causes epileptic seizures, learning deficits, altered spine morphology, and defective synaptic functions.

机构信息

Institut für Biochemie, Christian-Albrechts-Universität zu Kiel, D-24098 Kiel, Germany.

出版信息

J Neurosci. 2013 Aug 7;33(32):12915-28, 12928a. doi: 10.1523/JNEUROSCI.5910-12.2013.

Abstract

The metalloproteinase ADAM10 is of importance for Notch-dependent cortical brain development. The protease is tightly linked with α-secretase activity toward the amyloid precursor protein (APP) substrate. Increasing ADAM10 activity is suggested as a therapy to prevent the production of the neurotoxic amyloid β (Aβ) peptide in Alzheimer's disease. To investigate the function of ADAM10 in postnatal brain, we generated Adam10 conditional knock-out (A10cKO) mice using a CaMKIIα-Cre deleter strain. The lack of ADAM10 protein expression was evident in the brain cortex leading to a reduced generation of sAPPα and increased levels of sAPPβ and endogenous Aβ peptides. The A10cKO mice are characterized by weight loss and increased mortality after weaning associated with seizures. Behavioral comparison of adult mice revealed that the loss of ADAM10 in the A10cKO mice resulted in decreased neuromotor abilities and reduced learning performance, which were associated with altered in vivo network activities in the hippocampal CA1 region and impaired synaptic function. Histological and ultrastructural analysis of ADAM10-depleted brain revealed astrogliosis, microglia activation, and impaired number and altered morphology of postsynaptic spine structures. A defect in spine morphology was further supported by a reduction of the expression of NMDA receptors subunit 2A and 2B. The reduced shedding of essential postsynaptic cell adhesion proteins such as N-Cadherin, Nectin-1, and APP may explain the postsynaptic defects and the impaired learning, altered network activity, and synaptic plasticity of the A10cKO mice. Our study reveals that ADAM10 is instrumental for synaptic and neuronal network function in the adult murine brain.

摘要

金属蛋白酶 ADAM10 对 Notch 依赖性皮质脑发育很重要。该蛋白酶与 APP 底物的 α-分泌酶活性紧密相关。增加 ADAM10 活性被认为是预防阿尔茨海默病中神经毒性淀粉样 β(Aβ)肽产生的一种治疗方法。为了研究 ADAM10 在出生后大脑中的功能,我们使用 CaMKIIα-Cre 缺失株生成了 Adam10 条件性敲除(A10cKO)小鼠。ADAM10 蛋白表达的缺乏在大脑皮层中很明显,导致 sAPPα 的产生减少,sAPPβ 和内源性 Aβ 肽的水平增加。A10cKO 小鼠的特征是断奶后体重减轻和死亡率增加,伴有癫痫发作。成年小鼠的行为比较表明,A10cKO 小鼠中 ADAM10 的缺失导致运动能力下降和学习成绩下降,这与海马 CA1 区体内网络活动改变和突触功能受损有关。ADAM10 耗竭脑的组织学和超微结构分析显示星形胶质细胞增生、小胶质细胞活化以及突触后棘结构的数量减少和形态改变。棘突形态的缺陷进一步得到了 NMDA 受体亚单位 2A 和 2B 表达减少的支持。必需的突触后细胞粘附蛋白如 N-钙粘蛋白、Nectin-1 和 APP 的脱落减少,可能解释了 A10cKO 小鼠的突触后缺陷以及学习、网络活动改变和突触可塑性受损。我们的研究表明 ADAM10 对成年小鼠大脑中的突触和神经元网络功能至关重要。

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