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本文引用的文献

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Calcium channel regulation and presynaptic plasticity.钙通道调节与突触前可塑性。
Neuron. 2008 Sep 25;59(6):882-901. doi: 10.1016/j.neuron.2008.09.005.
2
Regulation of presynaptic Ca(V)2.1 channels by Ca2+ sensor proteins mediates short-term synaptic plasticity.Ca2+ 传感蛋白对突触前 Ca(V)2.1 通道的调节介导了短期突触可塑性。
Neuron. 2008 Jan 24;57(2):210-6. doi: 10.1016/j.neuron.2007.11.036.
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Role of Ca(2+) channels in short-term synaptic plasticity.钙离子通道在短期突触可塑性中的作用。
Curr Opin Neurobiol. 2007 Jun;17(3):352-9. doi: 10.1016/j.conb.2007.04.005. Epub 2007 Apr 26.
4
Differential regulation of CaV2.1 channels by calcium-binding protein 1 and visinin-like protein-2 requires N-terminal myristoylation.钙结合蛋白1和类视宁蛋白-2对CaV2.1通道的差异调节需要N端肉豆蔻酰化。
J Neurosci. 2005 Jul 27;25(30):7071-80. doi: 10.1523/JNEUROSCI.0452-05.2005.
5
Modulation of CaV2.1 channels by the neuronal calcium-binding protein visinin-like protein-2.神经元钙结合蛋白视宁样蛋白2对CaV2.1通道的调节作用
J Neurosci. 2005 Jul 27;25(30):7062-70. doi: 10.1523/JNEUROSCI.0447-05.2005.
6
The decrease in the presynaptic calcium current is a major cause of short-term depression at a calyx-type synapse.突触前钙电流的减少是花萼型突触短期抑制的主要原因。
Neuron. 2005 May 19;46(4):633-45. doi: 10.1016/j.neuron.2005.03.024.
7
Functional compensation of P/Q by N-type channels blocks short-term plasticity at the calyx of Held presynaptic terminal.N型通道对P/Q型通道的功能补偿会阻断海氏突触前终末花萼处的短期可塑性。
J Neurosci. 2004 Nov 17;24(46):10379-83. doi: 10.1523/JNEUROSCI.2104-04.2004.
8
Synaptic computation.突触计算
Nature. 2004 Oct 14;431(7010):796-803. doi: 10.1038/nature03010.
9
Neuronal Ca2+-sensor proteins: multitalented regulators of neuronal function.神经元钙传感器蛋白:神经元功能的多能调节因子。
Trends Neurosci. 2004 Apr;27(4):203-9. doi: 10.1016/j.tins.2004.01.010.
10
Molecular determinants of Ca(2+)/calmodulin-dependent regulation of Ca(v)2.1 channels.Ca(2+)/钙调蛋白依赖性调节Ca(v)2.1通道的分子决定因素
Proc Natl Acad Sci U S A. 2003 Dec 23;100(26):16059-64. doi: 10.1073/pnas.2237000100. Epub 2003 Dec 12.

钙结合蛋白-1 调节 CaV2.1 通道的分子决定因素。

Molecular determinants of CaV2.1 channel regulation by calcium-binding protein-1.

机构信息

Department of Pharmacology, School of Medicine, University of Washington, Seattle, Washington 98195-7280.

Department of Pharmacology, School of Medicine, University of Washington, Seattle, Washington 98195-7280.

出版信息

J Biol Chem. 2011 Dec 9;286(49):41917-41923. doi: 10.1074/jbc.M111.292417. Epub 2011 Sep 29.

DOI:10.1074/jbc.M111.292417
PMID:21965686
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3234952/
Abstract

Presynaptic Ca(V)2.1 channels, which conduct P/Q-type Ca(2+) currents, initiate synaptic transmission at most synapses in the central nervous system. Regulation of Ca(V)2.1 channels by CaM contributes significantly to short term facilitation and rapid depression of synaptic transmission. Short term synaptic plasticity is diverse in form and function at different synapses, yet CaM is ubiquitously expressed. Differential regulation of Ca(V)2.1 channels by CaM-like Ca(2+) sensor (CaS) proteins differentially affects short term synaptic facilitation and rapid synaptic depression in transfected sympathetic neuron synapses. Here, we define the molecular determinants for differential regulation of Ca(V)2.1 channels by the CaS protein calcium-binding protein-1 (CaBP1) by analysis of chimeras in which the unique structural domains of CaBP1 are inserted into CaM. Our results show that the N-terminal domain, including its myristoylation site, and the second EF-hand, which is inactive in Ca(2+) binding, are the key molecular determinants of differential regulation of Ca(V)2.1 channels by CaBP1. These findings give insight into the molecular code by which CaS proteins differentially regulate Ca(V)2.1 channel function and provide diversity of form and function of short term synaptic plasticity.

摘要

突触前 Ca(V)2.1 通道,其传导 P/Q 型 Ca(2+)电流,在中枢神经系统中的大多数突触起始突触传递。CaM 对 Ca(V)2.1 通道的调节显著促进了突触传递的短期易化和快速抑制。不同突触的短期突触可塑性在形式和功能上多种多样,但 CaM 广泛表达。CaM 样 Ca(2+)传感器 (CaS) 蛋白对 Ca(V)2.1 通道的差异调节,对转染交感神经元突触的短期突触易化和快速突触抑制有不同的影响。在这里,我们通过分析 CaBP1 中独特结构域插入 CaM 的嵌合体,定义了 CaS 蛋白钙结合蛋白-1 (CaBP1) 对 Ca(V)2.1 通道差异调节的分子决定因素。我们的结果表明,N 端结构域,包括其豆蔻酰化位点和第二个 EF 手,在 Ca(2+)结合中无活性,是 CaBP1 对 Ca(V)2.1 通道差异调节的关键分子决定因素。这些发现深入了解了 CaS 蛋白对 Ca(V)2.1 通道功能的差异调节的分子编码,并为短期突触可塑性的形式和功能多样性提供了线索。