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基因调控胆碱转运体表达对内源性与新合成乙酰胆碱释放的不同影响。

Differential impact of genetically modulated choline transporter expression on the release of endogenous versus newly synthesized acetylcholine.

作者信息

Iwamoto Hideki, Calcutt M Wade, Blakely Randy D

机构信息

Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, TN, USA.

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN, USA; Mass Spectrometry Research Center, Vanderbilt University School of Medicine, Nashville, TN, USA.

出版信息

Neurochem Int. 2016 Sep;98:138-45. doi: 10.1016/j.neuint.2016.03.012. Epub 2016 Mar 22.

Abstract

The efficient import of choline into cholinergic nerve terminals by the presynaptic, high-affinity choline transporter (CHT, SLC5A7) dictates the capacity for acetylcholine (ACh) synthesis and release. Tissue levels of ACh are significantly reduced in mice heterozygous for a loss of function mutation in Slc5a7 (HET, CHT(+/-)), but significantly elevated in overexpressing, Slc5a7 BAC-transgenic mice (BAC). Since the readily-releasable pool of ACh is thought to constitute a small fraction of the total ACh pool, these genotype-dependent changes raised the question as to whether CHT expression or activity might preferentially influence the size of reserve pool ACh vesicles. In the current study, we approached this question by evaluating CHT genotype effects on the release of ACh from suprafused mouse forebrain slices. We treated slices from HET, BAC or wildtype (WT) controls with elevated K(+) and monitored release of both newly synthesized and storage pools of ACh. Newly synthesized ACh produced following uptake of [(3)H]choline was quantified by scintillation spectrometry whereas release of endogenous ACh storage pools was quantified by an HPLC-MS approach, from the same samples. Whereas endogenous ACh release scaled with CHT gene dosage, preloaded [(3)H]ACh release displayed no significant genotype dependence. Our findings suggest that CHT protein levels preferentially impact the capacity for ACh release afforded by mobilization of reserve pool vesicles.

摘要

通过突触前高亲和力胆碱转运体(CHT,SLC5A7)将胆碱有效导入胆碱能神经末梢,决定了乙酰胆碱(ACh)合成和释放的能力。在Slc5a7功能缺失突变的杂合小鼠(HET,CHT(+/-))中,ACh的组织水平显著降低,但在过表达的Slc5a7 BAC转基因小鼠(BAC)中显著升高。由于ACh的易释放池被认为只占总ACh池的一小部分,这些基因型依赖性变化引发了一个问题,即CHT的表达或活性是否可能优先影响储备池ACh囊泡的大小。在本研究中,我们通过评估CHT基因型对超融合小鼠前脑切片中ACh释放的影响来探讨这个问题。我们用高钾处理来自HET、BAC或野生型(WT)对照的切片,并监测新合成的ACh池和储存池的释放。通过闪烁光谱法对摄取[(3)H]胆碱后产生的新合成ACh进行定量,而通过HPLC-MS方法对相同样品中内源性ACh储存池的释放进行定量。内源性ACh释放与CHT基因剂量成比例,而预加载的[(3)H]ACh释放没有显示出显著的基因型依赖性。我们的研究结果表明,CHT蛋白水平优先影响储备池囊泡动员所提供的ACh释放能力。

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