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大脑中的综合应激反应途径和神经调质信号:从肌张力障碍中得到的启示。

The integrated stress response pathway and neuromodulator signaling in the brain: lessons learned from dystonia.

机构信息

Department of Neurology.

Department of Neurobiology, and.

出版信息

J Clin Invest. 2024 Apr 1;134(7):e177833. doi: 10.1172/JCI177833.

Abstract

The integrated stress response (ISR) is a highly conserved biochemical pathway involved in maintaining proteostasis and cell health in the face of diverse stressors. In this Review, we discuss a relatively noncanonical role for the ISR in neuromodulatory neurons and its implications for synaptic plasticity, learning, and memory. Beyond its roles in stress response, the ISR has been extensively studied in the brain, where it potently influences learning and memory, and in the process of synaptic plasticity, which is a substrate for adaptive behavior. Recent findings demonstrate that some neuromodulatory neuron types engage the ISR in an "always-on" mode, rather than the more canonical "on-demand" response to transient perturbations. Atypical demand for the ISR in neuromodulatory neurons introduces an additional mechanism to consider when investigating ISR effects on synaptic plasticity, learning, and memory. This basic science discovery emerged from a consideration of how the ISR might be contributing to human disease. To highlight how, in scientific discovery, the route from starting point to outcomes can often be circuitous and full of surprise, we begin by describing our group's initial introduction to the ISR, which arose from a desire to understand causes for a rare movement disorder, dystonia. Ultimately, the unexpected connection led to a deeper understanding of its fundamental role in the biology of neuromodulatory neurons, learning, and memory.

摘要

整合应激反应(ISR)是一种高度保守的生化途径,参与在面对各种应激源时维持蛋白质平衡和细胞健康。在这篇综述中,我们讨论了 ISR 在神经调质神经元中相对非典型的作用及其对突触可塑性、学习和记忆的影响。除了在应激反应中的作用外,ISR 在大脑中也得到了广泛研究,它强烈影响学习和记忆,以及突触可塑性的过程,这是适应行为的基础。最近的发现表明,一些神经调质神经元类型以“始终开启”模式参与 ISR,而不是对短暂扰动的更典型的“按需”反应。神经调质神经元对 ISR 的非典型需求引入了另一个机制,在研究 ISR 对突触可塑性、学习和记忆的影响时需要考虑这一机制。这一基础科学发现源于对 ISR 如何可能导致人类疾病的考虑。为了强调在科学发现中,从起点到结果的路径通常是迂回曲折且充满惊喜的,我们首先描述了我们小组最初对 ISR 的介绍,这源于我们希望了解一种罕见运动障碍——肌张力障碍的病因。最终,出乎意料的联系导致我们对 ISR 在神经调质神经元、学习和记忆的生物学中的基本作用有了更深入的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c290/10977992/d2bfafe27851/jci-134-177833-g001.jpg

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