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Application of High-Throughput Assays to Examine Phospho-Modulation of the Late Steps of Regulated Exocytosis

机译:高通量分析技术在调控胞吐作用后期步骤的磷酸调节中的应用

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Abstract: Regulated exocytosis enables a range of physiological functions including neurotransmission, and the late steps (i.e., docking, priming and Ca2+-triggered membrane fusion) are modulated by a highly conserved set of proteins and lipids. Many of the molecular components and biochemical interactions required have been identified; the precise mechanistic steps they modulate and the biochemical interactions that need to occur across steps are still the subject of intense investigation. Particularly, although the involvement of phosphorylation in modulating exocytosis has been intensively investigated over the past three decades, it is unclear which phosphorylation events are a conserved part of the fundamental fusion mechanism and/or serve as part of the physiological fusion machine (e.g., to modulate Ca2+ sensitivity). Here, the homotypic fusion of cortical vesicles was monitored by utilizing new high-throughput, cost-effective assays to assess the influence of 17 small molecule phospho-modulators on docking/priming, Ca2+ sensitivity and membrane fusion. Specific phosphatases and casein kinase 2 are implicated in modulating the Ca2+ sensitivity of fusion, whereas sphingosine kinase is implicated in modulating the ability of vesicles to fuse. These results indicate the presence of multiple kinases and phosphatases on the vesicles and critical phosphorylation sites on vesicle membrane proteins and lipids that directly influence late steps of regulated exocytosis.
机译:摘要:调控的胞吐作用使包括神经传递在内的一系列生理功能得以实现,后期步骤(即对接,引发和Ca2 +触发的膜融合)受到高度保守的蛋白质和脂质的调控。已经确定了许多所需的分子成分和生化相互作用;它们调节的精确机械步骤以及跨步骤需要发生的生化相互作用仍然是深入研究的主题。特别地,尽管在过去的三十年中已经深入研究了磷酸化在调控胞吐过程中的作用,但尚不清楚哪些磷酸化事件是基本融合机​​制的保守部分和/或作为生理融合机器的一部分(例如,调节Ca2 +敏感性)。在这里,通过利用新的高通量,具有成本效益的测定法来评估皮层囊泡的同型融合,以评估17种小分子磷酸调节剂对对接/引发,Ca 2+敏感性和膜融合的影响。特定的磷酸酶和酪蛋白激酶2与调节融合蛋白的Ca2 +敏感性有关,而鞘氨醇激酶与调节小泡融合的能力有关。这些结果表明,在囊泡上存在多种激酶和磷酸酶,在囊泡膜蛋白和脂质上存在关键的磷酸化位点,它们直接影响调控胞吐作用的后期步骤。

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