Herbst Sabine, Lipstein Noa, Jahn Olaf, Sinz Andrea
Biol Chem. 2014 Jul;395(7-8):763-8. doi: 10.1515/hsz-2014-0134.
Munc13 proteins are essential presynaptic regulators that mediate synaptic vesicle priming and play a role in the regulation of neuronal short-term synaptic plasticity. All four Munc13 isoforms share a common domain structure, including a calmodulin (CaM) binding site in their otherwise divergent N-termini. Here, we summarize recent results on the investigation of the CaM/Munc13 interaction. By combining chemical cross-linking, photoaffinity labeling, and mass spectrometry, we showed that all neuronal Munc13 isoforms exhibit similar CaM binding modes. Moreover, we demonstrated that the 1-5-8-26 CaM binding motif discovered in Munc13-1 cannot be induced in the classical CaM target skMLCK, indicating unique features of the Munc13 CaM binding motif.
Munc13蛋白是重要的突触前调节因子,介导突触小泡的启动,并在神经元短期突触可塑性的调节中发挥作用。所有四种Munc13亚型都具有共同的结构域结构,包括在其不同的N端的一个钙调蛋白(CaM)结合位点。在这里,我们总结了关于CaM/Munc13相互作用研究的最新结果。通过结合化学交联、光亲和标记和质谱分析,我们表明所有神经元Munc13亚型都表现出相似的CaM结合模式。此外,我们证明在Munc13-1中发现的1-5-8-26 CaM结合基序在经典的CaM靶点skMLCK中无法诱导产生,这表明Munc13 CaM结合基序具有独特的特征。