利用生物物理参数确定特定 GluN2 亚基对突触后 NMDAR 响应的功能贡献

Q4 Biochemistry, Genetics and Molecular Biology Methods in molecular biology Pub Date : 2024-01-01 DOI:10.1007/978-1-0716-3830-9_14
Annemarie Dedek, Michael E Hildebrand
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引用次数: 0

摘要

NMDAR 是由两个 GluN1 亚基和两个 GluN2 和/或 GluN3 亚基组成的异源四聚体,其中 GluN2 亚基在结构和功能上表现出显著的多样性。最近的研究强调了确定每个 GluN2 亚基在不同中枢神经系统区域和发育阶段的特定作用及其对 NMDAR 介导的信号转导和可塑性的独特贡献的重要性。了解 GluN2 亚基的不同功能对于开发 NMDAR 相关疾病的靶向治疗策略至关重要。然而,在体外切片中测量单个 GluN2 亚型的功能贡献具有挑战性。传统的方法是使用药理学或遗传学方法,但在很多情况下,这是不可能的,或者仅限于群体水平的 NMDAR 反应。在这里,我们描述了一种使用微型突触 NMDAR 反应的生物物理特性作为代理来测量特定 GluN2-NMDAR 亚基对神经元内单个突触的功能贡献的技术。
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Characterizing Functional Contributions of Specific GluN2 Subunits to Individual Postsynaptic NMDAR Responses Using Biophysical Parameters.

The NMDAR is a heterotetramer composed of two GluN1 subunits and two GluN2 and/or GluN3 subunits, with the GluN2 subunits exhibiting significant diversity in their structure and function. Recent studies have highlighted the importance of characterizing the specific roles of each GluN2 subunit across central nervous system regions and developmental stages, as well as their unique contributions to NMDAR-mediated signaling and plasticity. Understanding the distinct functions of GluN2 subunits is critical for the development of targeted therapeutic strategies for NMDAR-related disorders. However, measuring the functional contribution of individual GluN2 subtypes in ex vivo slices is challenging. Conventionally, pharmacological or genetic approaches are used, but, in many cases, this is not possible or is restricted to population-level NMDAR responses. Here, we describe a technique for using biophysical properties of miniature synaptic NMDAR responses as a proxy to measure the functional contribution of specific GluN2-NMDAR subunits to individual synapses within a neuron.

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来源期刊
Methods in molecular biology
Methods in molecular biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
2.00
自引率
0.00%
发文量
3536
期刊介绍: For over 20 years, biological scientists have come to rely on the research protocols and methodologies in the critically acclaimed Methods in Molecular Biology series. The series was the first to introduce the step-by-step protocols approach that has become the standard in all biomedical protocol publishing. Each protocol is provided in readily-reproducible step-by-step fashion, opening with an introductory overview, a list of the materials and reagents needed to complete the experiment, and followed by a detailed procedure that is supported with a helpful notes section offering tips and tricks of the trade as well as troubleshooting advice.
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