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一个特定的带负电荷序列赋予Munc13-1在突触胞吐作用中的分子内调节功能。

A specific negatively charged sequence confers intramolecular regulation on Munc13-1 function in synaptic exocytosis.

作者信息

Zhao Kexu, Zhang Li, Lei Mengshi, Jin Ziqi, Du Tianxin, Zhang Hong, Sheng Yin, Hu Zhitao, Wang Shen, Ma Cong

机构信息

Key Laboratory of Molecular Biophysics of the Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.

Key Clinical Laboratory of Henan Province, Department of Clinical Laboratory, The First Affiliated Hospital of Zhengzhou University, Zhengzhou 450052, China.

出版信息

Proc Natl Acad Sci U S A. 2025 Jun 17;122(24):e2508915122. doi: 10.1073/pnas.2508915122. Epub 2025 Jun 9.

Abstract

Munc13 family proteins are crucial for the secretion of neurotransmitters and hormones necessary for cell communication. They share a conserved C-terminal region that includes C and the MUN domains, which facilitate membrane interactions and the assembly of soluble N-ethylmaleimide sensitive factor attachment protein receptor (SNARE) complexes. Neuronal isoforms of Munc13 possess a variable N-terminal region that is essential for neurotransmitter release and short-term plasticity, although the precise functions of this region remain not fully understood. Here, we identified a negatively charged sequence within the N terminus of Munc13-1, termed polyE, which is specific to Munc13-1 among all Munc13 isoforms and potentially derived from a common ancestor of homeotherms. We found that polyE binds significantly to the MUN domain through charge-charge interactions, inhibiting MUN activity in promoting SNARE complex assembly. Disrupting the polyE-MUN interaction by introducing pseudophosphorylated mutations in the MUN domain alleviates this inhibition, thereby enhancing neurotransmitter release. Strikingly, Ca ions exhibit significant binding to polyE. We found that 40 μM of Ca adequately competes with the polyE-MUN interaction to reduce polyE inhibition. This concentration is comparable to presynaptic local [Ca] triggered by a single action potential. Taken together, these results indicate an autoinhibition conformation of Munc13-1 mediated by the polyE-MUN interaction. In addition, the relief of this autoinhibition conformation of Munc13-1 by presynaptic Ca influx and/or posttranslational modifications in the MUN domain may underlie Munc13-1 function in neurotransmitter release and short-term plasticity.

摘要

Munc13家族蛋白对于细胞通讯所必需的神经递质和激素的分泌至关重要。它们共享一个保守的C末端区域,该区域包括C结构域和MUN结构域,这些结构域有助于膜相互作用以及可溶性N - 乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合体的组装。Munc13的神经元亚型具有可变的N末端区域,该区域对于神经递质释放和短期可塑性至关重要,尽管该区域的确切功能仍未完全了解。在这里,我们在Munc13 - 1的N末端鉴定出一个带负电荷的序列,称为polyE,它在所有Munc13亚型中是Munc13 - 1特有的,并且可能源自恒温动物的共同祖先。我们发现polyE通过电荷 - 电荷相互作用与MUN结构域显著结合,抑制MUN在促进SNARE复合体组装中的活性。通过在MUN结构域中引入假磷酸化突变来破坏polyE - MUN相互作用可减轻这种抑制,从而增强神经递质释放。令人惊讶的是,钙离子与polyE表现出显著结合。我们发现40μM的钙离子足以与polyE - MUN相互作用竞争,以减少polyE的抑制作用。该浓度与单个动作电位触发的突触前局部[Ca]相当。综上所述,这些结果表明由polyE - MUN相互作用介导的Munc13 - 1的一种自身抑制构象。此外,突触前钙离子内流和/或MUN结构域中的翻译后修饰对Munc13 - 1这种自身抑制构象的缓解可能是Munc13 - 1在神经递质释放和短期可塑性中发挥功能的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6e9/12184661/767412c40085/pnas.2508915122fig01.jpg

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