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突触活动和肌肉收缩增加神经肌肉接头突触前膜中PDK1和PKCβI的磷酸化。

Synaptic Activity and Muscle Contraction Increases PDK1 and PKCβI Phosphorylation in the Presynaptic Membrane of the Neuromuscular Junction.

作者信息

Hurtado Erica, Cilleros Víctor, Just Laia, Simó Anna, Nadal Laura, Tomàs Marta, Garcia Neus, Lanuza Maria A, Tomàs Josep

机构信息

Unitat d'Histologia i Neurobiologia (UHNEUROB), Facultat de Medicina i Ciències de la Salut, Universitat Rovira i VirgiliReus, Spain.

出版信息

Front Mol Neurosci. 2017 Aug 25;10:270. doi: 10.3389/fnmol.2017.00270. eCollection 2017.

Abstract

Conventional protein kinase C βI (cPKCβI) is a conventional protein kinase C (PKC) isoform directly involved in the regulation of neurotransmitter release in the neuromuscular junction (NMJ). It is located exclusively at the nerve terminal and both synaptic activity and muscle contraction modulate its protein levels and phosphorylation. cPKCβI molecular maturation includes a series of phosphorylation steps, the first of which is mediated by phosphoinositide-dependent kinase 1 (PDK1). Here, we sought to localize PDK1 in the NMJ and investigate the hypothesis that synaptic activity and muscle contraction regulate in parallel PDK1 and cPKCβI phosphorylation in the membrane fraction. To differentiate the presynaptic and postsynaptic activities, we abolished muscle contraction with μ-conotoxin GIIIB (μ-CgTx-GIIIB) in some experiments before stimulation of the phrenic nerve (1 Hz, 30 min). Then, we analyzed total and membrane/cytosol fractions of skeletal muscle by Western blotting. Results showed that PDK1 is located exclusively in the nerve terminal of the NMJ. After nerve stimulation with and without coincident muscle contraction, total PDK1 and phosphorylated PDK1 (pPDK1) protein levels remained unaltered. However, synaptic activity specifically enhanced phosphorylation of PDK1 in the membrane, an important subcellular location for PDK1 function. This increase in pPDK1 coincides with a significant increase in the phosphorylation of its substrate cPKCβI also in the membrane fraction. Moreover, muscle contraction maintains PDK1 and pPDK1 but increases cPKCβI protein levels and its phosphorylation. Thus, even though PDK1 activity is maintained, pcPKCβI levels increase in concordance with total cPKCβI. Together, these results indicate that neuromuscular activity could induce the membrane targeting of pPDK1 in the nerve terminal of the NMJ to promote the phosphorylation of the cPKCβI, which is involved in ACh release.

摘要

传统蛋白激酶CβI(cPKCβI)是一种传统蛋白激酶C(PKC)亚型,直接参与神经肌肉接头(NMJ)中神经递质释放的调节。它仅位于神经末梢,突触活动和肌肉收缩均可调节其蛋白水平和磷酸化。cPKCβI的分子成熟包括一系列磷酸化步骤,其中第一步由磷酸肌醇依赖性激酶1(PDK1)介导。在此,我们试图在NMJ中定位PDK1,并研究突触活动和肌肉收缩并行调节膜组分中PDK1和cPKCβI磷酸化的假说。为了区分突触前和突触后活动,我们在一些实验中,在膈神经刺激(1Hz,30分钟)前用μ-芋螺毒素GIIIB(μ-CgTx-GIIIB)消除肌肉收缩。然后,我们通过蛋白质印迹法分析骨骼肌的总组分和膜/胞质溶胶组分。结果显示,PDK1仅位于NMJ的神经末梢。在有或无同步肌肉收缩的神经刺激后,总PDK1和磷酸化PDK1(pPDK1)蛋白水平保持不变。然而,突触活动特异性增强了膜中PDK1的磷酸化,而膜是PDK1发挥功能的重要亚细胞位置。pPDK1的这种增加与膜组分中其底物cPKCβI磷酸化的显著增加相一致。此外,肌肉收缩维持PDK1和pPDK1,但增加cPKCβI蛋白水平及其磷酸化。因此,即使PDK1活性得以维持,磷酸化cPKCβI(pcPKCβI)水平也与总cPKCβI一致增加。总之,这些结果表明神经肌肉活动可诱导pPDK1在NMJ神经末梢的膜靶向,以促进参与乙酰胆碱释放的cPKCβI的磷酸化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1ad/5574929/9f79d9005617/fnmol-10-00270-g0001.jpg

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