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发动蛋白I与有被内吞中间体相关,并在神经末梢经历刺激依赖性去磷酸化。

Amphiphysin I is associated with coated endocytic intermediates and undergoes stimulation-dependent dephosphorylation in nerve terminals.

作者信息

Bauerfeind R, Takei K, De Camilli P

机构信息

Department of Cell Biology and the Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Biol Chem. 1997 Dec 5;272(49):30984-92. doi: 10.1074/jbc.272.49.30984.

Abstract

Amphiphysin I is an abundant presynaptic protein that interacts via its COOH-terminal src homology 3 (SH3) domain with the GTPase dynamin I and the inositol-5-phosphatase synaptojanin. Both dynamin I and synaptojanin I have a putative role in synaptic vesicle recycling and undergo rapid dephosphorylation in rat brain synaptosomes stimulated to secrete by a depolarizing stimulus. We show here that amphiphysin I also undergoes constitutive phosphorylation and stimulationdependent dephosphorylation. Dephosphorylation of amphiphysin I requires extracellular Ca2+ and is unaffected by pretreatment of synaptosomes with tetanus toxin. Thus, Ca2+ influx, but not synaptic vesicle exocytosis, is required for dephosphorylation. Dephosphorylation of amphiphysin I, like dephosphorylation of dynamin I and synaptojanin I, is inhibited by cyclosporin A and FK-506 (0.5 microM), two drugs that specifically block the Ca2+/calmodulin-dependent phosphatase 2B calcineurin, but not by okadaic acid (1 microM), which blocks protein phosphatases 1 and 2B. We also show by immunogold electron microscopy immunocytochemistry that amphiphysin I is localized in the nerve terminal cytomatrix and is partially associated with endocytic intermediates. These include the clathrin-coated buds and dynamin-coated tubules, which accumulate in nerve terminal membranes incubated in the presence of guanosine 5'-3-O-(thio)triphosphate. These data support the hypothesis that amphiphysin I, dynamin I, and synaptojanin I are physiological partners in some step(s) of synaptic vesicle endocytosis. We hypothesize that the parallel Ca2+-dependent calcineurin-dependent dephosphorylation of amphiphysin I and of its two major binding proteins is part of a process that primes the nerve terminal for endocytosis in response to a burst of exocytosis.

摘要

发动蛋白结合蛋白I是一种丰富的突触前蛋白,它通过其COOH末端的src同源结构域3(SH3)与GTP酶发动蛋白I和肌醇-5-磷酸酶突触素相互作用。发动蛋白I和突触素I在突触小泡循环中都具有假定作用,并且在受到去极化刺激而分泌的大鼠脑突触体中会经历快速去磷酸化。我们在此表明,发动蛋白结合蛋白I也会经历组成型磷酸化和刺激依赖性去磷酸化。发动蛋白结合蛋白I的去磷酸化需要细胞外Ca2+,并且不受破伤风毒素预处理突触体的影响。因此,去磷酸化需要Ca2+内流,但不需要突触小泡胞吐作用。发动蛋白结合蛋白I的去磷酸化,与发动蛋白I和突触素I的去磷酸化一样,受到环孢菌素A和FK-506(0.5微摩尔)的抑制,这两种药物特异性阻断Ca2+/钙调蛋白依赖性磷酸酶2B钙调神经磷酸酶,但不受冈田酸(1微摩尔)的抑制,冈田酸可阻断蛋白磷酸酶1和2B。我们还通过免疫金电子显微镜免疫细胞化学表明,发动蛋白结合蛋白I定位于神经末梢细胞基质,并部分与内吞中间体相关。这些包括网格蛋白包被的芽和发动蛋白包被的小管,它们在存在鸟苷5'-3-O-(硫代)三磷酸的情况下孵育的神经末梢膜中积累。这些数据支持以下假设:发动蛋白结合蛋白I、发动蛋白I和突触素I在突触小泡内吞作用的某些步骤中是生理伙伴。我们假设发动蛋白结合蛋白I及其两种主要结合蛋白的平行Ca2+依赖性钙调神经磷酸酶依赖性去磷酸化是一个过程的一部分,该过程使神经末梢为响应胞吐作用爆发而进行内吞作用做好准备。

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