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首页> 外文期刊>Progress in Artificial Intelligence >Delineating the Molecular Basis of the Calmodulin-bMunc13-2 Interaction by Cross-Linking/Mass Spectrometry-Evidence for a Novel CaM Binding Motif in bMunc13-2
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Delineating the Molecular Basis of the Calmodulin-bMunc13-2 Interaction by Cross-Linking/Mass Spectrometry-Evidence for a Novel CaM Binding Motif in bMunc13-2

机译:通过交联/质谱 - 在BMUNC13-2中的交联/质谱 - 通过交联/质谱来描绘钙调蛋白-BMUNC13-2的分子基础。

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Exploring the interactions between the Ca2+ binding protein calmodulin (CaM) and its target proteins remains a challenging task. Members of the Munc13 protein family play an essential role in short-term synaptic plasticity, modulated via the interaction with CaM at the presynaptic compartment. In this study, we focus on the bMunc13-2 isoform expressed in the brain, as strong changes in synaptic transmission were observed upon its mutagenesis or deletion. The CaM-bMunc13-2 interaction was previously characterized at the molecular level using short bMunc13-2-derived peptides only, revealing a classical 1-5-10 CaM binding motif. Using larger protein constructs, we have now identified for the first time a novel and unique CaM binding site in bMunc13-2 that contains an N-terminal extension of a classical 1-5-10 CaM binding motif. We characterize this motif using a range of biochemical and biophysical methods and highlight its importance for the CaM-bMunc13-2 interaction.
机译:探索Ca2 +结合蛋白钙调蛋白(CAM)及其靶蛋白之间的相互作用仍然是一个具有挑战性的任务。 Munc13蛋白质家族的成员在短期突触可塑性中起重要作用,通过在突触前室与凸轮的相互作用调制。 在这项研究中,我们专注于大脑中表达的Bmunc13-2同种型,因为在其诱变或缺失时观察到突触传递的强烈变化。 凸轮Bmunc13-2的相互作用先前使用短BMunc13-2衍生的肽在分子水平上表征,揭示了一种经典1-5-10凸轮结合基序。 使用较大的蛋白质构建体,我们现在首次鉴定了BMUNC13-2中的新颖和独特的凸轮结合位点,其含有经典1-5-10凸轮绑定基序的N末端延伸。 我们使用一系列生物化学和生物物理方法来表征该基序,并突出其对CAM-BMUNC13-2相互作用的重要性。

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