首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Syndapin I and endophilin I bind overlapping proline-rich regions of dynamin I: role in synaptic vesicle endocytosis.
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Syndapin I and endophilin I bind overlapping proline-rich regions of dynamin I: role in synaptic vesicle endocytosis.

机译:Syndapin I和endophilin I结合动力蛋白I重叠的脯氨酸丰富的区域:在突触小泡内吞中的作用。

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摘要

Dynamin I mediates vesicle fission during synaptic vesicle endocytosis (SVE). Its proline-rich domain (PRD) binds the Src-homology 3 (SH3) domain of a subset of proteins that can deform membranes. Syndapin I, amphiphysin I, and endophilin I are its major partners implicated in SVE. Syndapin binding is controlled by phosphorylation at Ser-774 and Ser-778 in the dynamin phospho-box. We now define syndapin and endophilin-binding sites by peptide competition and site-directed mutagenesis. Both bound the same region of the dynamin PRD and both exhibited unusual bidirectional binding modes around core PxxP motifs, unlike amphiphysin which employed a class II binding mode. Endophilin binds to tandem PxxP motifs in the sequence (778)SPTPQRRAPAVPPARPGSR(796) in dynamin, with SPTPQ being an overhang sequence. In contrast, syndapin binding involves two components in the region (772)RRSPTSSPTPQRRAPAVPPARPGSR(796). It required a single PxxP core and a non-PxxP N-terminally anchored extension which bridges the phospho-box and may contribute to binding specificity and affinity. Syndapin binding is exquisitely sensitive to the introduction of negative charges almost anywhere along this region, explaining why it is a highly tuned phospho-sensor. Over-expression of dynamin point mutants that fail to bind syndapin or endophilin inhibit SVE in cultured neurons. Due to overlapping binding sites the interactions between dynamin and syndapin or endophilin were mutually exclusive. Because syndapin acts as a phospho-sensor, this supports its role in depolarization-induced SVE at the synapse, which involves dynamin dephosphorylation. We propose syndapin and endophilin function either at different stages during SVE or in mechanistically distinct types of SVE.
机译:动力蛋白I在突触囊泡内吞作用(SVE)期间介导囊泡裂变。它的富含脯氨酸的结构域(PRD)结合可以使膜变形的蛋白质子集的Src同源3(SH3)域。 Syndapin I,两亲性激素I和Endophilin I是其与SVE相关的主要伙伴。 Syndapin结合是通过在动力磷酸酯盒中Ser-774和Ser-778的磷酸化来控制的。现在,我们通过肽竞争和定点诱变定义了syndapin和endophilin结合位点。两者都结合了动力蛋白PRD的相同区域,并且都在核心PxxP基序周围表现出不同寻常的双向结合模式,这与采用II类结合模式的两性菌素不同。内啡肽在动力蛋白中以序列(778)SPTPQRRAPAVPPARPGSRSR(796)的串联PxxP基序结合,其中SPTPQ为突出序列。相反,syndapin结合涉及区域(772)RRSPTSSPTPQRRAPAVPPARPGSR(796)中的两个组件。它需要一个PxxP核心和一个非PxxP N末端锚定的延伸,该延伸桥接磷酸盒,并可能有助于结合特异性和亲和力。 Syndapin结合对沿该区域几乎任何地方引入的负电荷都非常敏感,这解释了为什么它是高度可调的磷酸传感器。无法结合syndapin或endophilin的dynamin点突变体的过表达抑制了培养的神经元中的SVE。由于重叠的结合位点,动力蛋白和西达平或内皮糖蛋白之间的相互作用是互斥的。因为syndapin充当磷酸传感器,所以这支持了它在去极化诱导的突触SVE中的作用,这涉及动力蛋白去磷酸化。我们提议在SVE的不同阶段或在机械上不同类型的SVE中使用syndapin和endophilin功能。

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