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重新审视相互作用特异性发现,神经元和脂肪细胞的Munc18膜融合调节蛋白在与伙伴SNARE Syntaxin的结合相互作用上存在差异。

Revisiting interaction specificity reveals neuronal and adipocyte Munc18 membrane fusion regulatory proteins differ in their binding interactions with partner SNARE Syntaxins.

作者信息

Christie Michelle P, Hu Shu-Hong, Whitten Andrew E, Rehman Asma, Jarrott Russell J, King Gordon J, Collins Brett M, Martin Jennifer L

机构信息

Division of Chemistry and Structural Biology, Institute for Molecular Bioscience, University of Queensland, St Lucia, Queensland, Australia.

Division of Cell Biology and Molecular Medicine, Institute for Molecular Bioscience, University of Queensland, St Lucia, Queensland, Australia.

出版信息

PLoS One. 2017 Oct 31;12(10):e0187302. doi: 10.1371/journal.pone.0187302. eCollection 2017.

Abstract

The efficient delivery of cellular cargo relies on the fusion of cargo-carrying vesicles with the correct membrane at the correct time. These spatiotemporal fusion events occur when SNARE proteins on the vesicle interact with cognate SNARE proteins on the target membrane. Regulatory Munc18 proteins are thought to contribute to SNARE interaction specificity through interaction with the SNARE protein Syntaxin. Neuronal Munc18a interacts with Syntaxin1 but not Syntaxin4, and adipocyte Munc18c interacts with Syntaxin4 but not Syntaxin1. Here we show that this accepted view of specificity needs revision. We find that Munc18c interacts with both Syntaxin4 and Syntaxin1, and appears to bind "non-cognate" Syntaxin1 a little more tightly than Syntaxin4. Munc18a binds Syntaxin1 and Syntaxin4, though it interacts with its cognate Syntaxin1 much more tightly. We also observed that when bound to non-cognate Munc18c, Syntaxin1 captures its neuronal SNARE partners SNAP25 and VAMP2, and Munc18c can bind to pre-formed neuronal SNARE ternary complex. These findings reveal that Munc18a and Munc18c bind Syntaxins differently. Munc18c relies principally on the Syntaxin N-peptide interaction for binding Syntaxin4 or Syntaxin1, whereas Munc18a can bind Syntaxin1 tightly whether or not the Syntaxin1 N-peptide is present. We conclude that Munc18a and Munc18c differ in their binding interactions with Syntaxins: Munc18a has two tight binding modes/sites for Syntaxins as defined previously but Munc18c has just one that requires the N-peptide. These results indicate that the interactions between Munc18 and Syntaxin proteins, and the consequences for in vivo function, are more complex than can be accounted for by binding specificity alone.

摘要

细胞货物的有效运输依赖于携带货物的囊泡在正确的时间与正确的膜融合。当囊泡上的SNARE蛋白与靶膜上的同源SNARE蛋白相互作用时,就会发生这些时空融合事件。调节性Munc18蛋白被认为通过与SNARE蛋白Syntaxin相互作用来促进SNARE相互作用的特异性。神经元Munc18a与Syntaxin1相互作用,但不与Syntaxin4相互作用,脂肪细胞Munc18c与Syntaxin4相互作用,但不与Syntaxin1相互作用。在这里,我们表明这种被广泛接受的特异性观点需要修正。我们发现Munc18c与Syntaxin4和Syntaxin1都相互作用,并且似乎比Syntaxin4更紧密地结合“非同源”的Syntaxin1。Munc18a结合Syntaxin1和Syntaxin4,尽管它与同源的Syntaxin1相互作用更紧密。我们还观察到,当与非同源的Munc18c结合时,Syntaxin1捕获其神经元SNARE伙伴SNAP25和VAMP2,并且Munc18c可以结合预先形成的神经元SNARE三元复合物。这些发现揭示了Munc18a和Munc18c与Syntaxin的结合方式不同。Munc18c主要依赖于Syntaxin N端肽的相互作用来结合Syntaxin4或Syntaxin1,而无论Syntaxin1的N端肽是否存在,Munc18a都可以紧密结合Syntaxin1。我们得出结论,Munc18a和Munc18c与Syntaxin的结合相互作用不同:Munc18a如先前定义的那样具有两种与Syntaxin紧密结合的模式/位点,但Munc18c只有一种需要N端肽的结合模式/位点。这些结果表明,Munc18和Syntaxin蛋白之间的相互作用以及对体内功能的影响比仅由结合特异性所能解释的更为复杂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f438/5663490/0dfa69f358de/pone.0187302.g001.jpg

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