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Structural Basis for a Munc13–1 Homodimer to Munc13–1/RIM Heterodimer Switch

机译:Munc13-1均聚物到Munc13-1 / RIM异二聚体开关的结构基础

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摘要

C 2 domains are well characterized as Ca 2+/phospholipid-binding modules, but little is known about how they mediate protein–protein interactions. In neurons, a Munc13–1 C 2A-domain/RIM zinc-finger domain (ZF) heterodimer couples synaptic vesicle priming to presynaptic plasticity. We now show that the Munc13–1 C 2A domain homodimerizes, and that homodimerization competes with Munc13–1/RIM heterodimerization. X-ray diffraction studies guided by nuclear magnetic resonance (NMR) experiments reveal the crystal structures of the Munc13–1 C 2A-domain homodimer and the Munc13–1 C 2A-domain/RIM ZF heterodimer at 1.44 Å and 1.78 Å resolution, respectively. The C 2A domain adopts a β-sandwich structure with a four-stranded concave side that mediates homodimerization, leading to the formation of an eight-stranded β-barrel. In contrast, heterodimerization involves the bottom tip of the C 2A-domain β-sandwich and a C-terminal α-helical extension, which wrap around the RIM ZF domain. Our results describe the structural basis for a Munc13–1 homodimer–Munc13–1/RIM heterodimer switch that may be crucial for vesicle priming and presynaptic plasticity, uncovering at the same time an unexpected versatility of C 2 domains as protein–protein interaction modules, and illustrating the power of combining NMR spectroscopy and X-ray crystallography to study protein complexes.
机译:C 2结构域被很好地表征为Ca 2 + /磷脂结合模块,但对它们如何介导蛋白质间相互作用的了解甚少。在神经元中,一个Munc13–1 C 2A域/ RIM锌指结构域(ZF)异二聚体将突触小泡引发与突触前可塑性结合。现在,我们显示Munc13-1 C 2A域均二聚体,并且同二聚体与Munc13-1 / RIM异二聚体竞争。通过核磁共振(NMR)实验进行的X射线衍射研究揭示了Munc13-1 C 2A域同质二聚体和Munc13-1 C 2A域/ RIM ZF异二聚体的晶体结构,分别为1.44Å和1​​.78Å分辨率。 。 C 2A结构域采用具有四链凹面的β夹心结构,介导均二聚作用,导致形成八链β桶。相比之下,异二聚化涉及C 2A域β三明治和C末端α螺旋延伸的底端,它们围绕RIM ZF域。我们的结果描述了Munc13-1同二聚体-Munc13-1 / RIM异二聚体开关的结构基础,这可能对囊泡启动和突触前可塑性至关重要,同时揭示了C 2结构域作为蛋白-蛋白相互作用模块的出乎意料的多功能性,并说明了结合NMR光谱学和X射线晶体学研究蛋白质复合物的能力。

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