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细胞内钙离子稳态紊乱是 Aβ 诱导的转基因果蝇学习记忆损伤和寿命缩短的原因。

Disrupted cellular calcium homeostasis is responsible for Aβ-induced learning and memory damage and lifespan shortening in a model of Aβ transgenic fly.

机构信息

Department of Pharmacology, College of Medicine, National Cheng-Kung University, Tainan, Taiwan.

Institute of Basic Medical Sciences, College of Medicine, National Cheng-Kung University, Tainan, Taiwan.

出版信息

IUBMB Life. 2022 Aug;74(8):754-762. doi: 10.1002/iub.2621. Epub 2022 May 9.

DOI:10.1002/iub.2621
PMID:35531745
Abstract

Accumulated Aβ is one of the hallmarks of Alzheimer's disease. Although accumulated results from in vivo and in vitro studies have shown that accumulated Aβ causes learning and memory deficit, cell death, and lifespan reduction, the underlying mechanism remains elusive. In neurons, calcium dynamics is regulated by voltage-gated calcium channel (VGCC) and endoplasmic reticulum and is important for neuron survival and formation of learning and memory. The current study employs in vivo genetics to reveal the role of calcium regulation systems in Aβ-induced behavioral damage. Our data shows that although increased VGCC improves learning and memory in Aβ42 flies, reduction of VGCC and Inositol trisphosphate receptors extends Aβ42 flies' lifespan and improves cell viability. The complex role of calcium regulation systems in Aβ-induced damage suggests that the imbalance of calcium dynamic is one of the main factors to trigger learning and memory deficit and cell death in the disease.

摘要

淀粉样蛋白 Aβ 的积累是阿尔茨海默病的标志之一。虽然来自体内和体外研究的积累结果表明,积累的 Aβ 会导致学习和记忆缺陷、细胞死亡和寿命缩短,但潜在的机制仍难以捉摸。在神经元中,钙动力学受电压门控钙通道 (VGCC) 和内质网调节,对神经元存活和学习记忆的形成很重要。本研究采用体内遗传学方法揭示钙调节系统在 Aβ 诱导的行为损伤中的作用。我们的数据表明,尽管增加 VGCC 可以改善 Aβ42 果蝇的学习和记忆,但减少 VGCC 和三磷酸肌醇受体可以延长 Aβ42 果蝇的寿命并提高细胞活力。钙调节系统在 Aβ 诱导损伤中的复杂作用表明,钙动态失衡是引发疾病中学习和记忆缺陷和细胞死亡的主要因素之一。

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