Piotrowski, ChristineChristinePiotrowskiMoretti, RoccoRoccoMorettiIhling, Christian H.Christian H.IhlingHaedicke, AndréAndréHaedickeLiepold, ThomasThomasLiepoldLipstein, NoaNoaLipsteinMeiler, JensJensMeilerJahn, OlafOlafJahnSinz, AndreaAndreaSinz2021-04-262021-04-262020https://resolver.sub.uni-goettingen.de/purl?gro-2/84387Exploring 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.enDelineating the Molecular Basis of the Calmodulin‒bMunc13-2 Interaction by Cross-Linking/Mass Spectrometry-Evidence for a Novel CaM Binding Motif in bMunc13-2journal_article10.3390/cells901013631936129