首页> 外文期刊>The Journal of Physiology >Amyloid Beta42 oligomers up‐regulate the excitatory synapses by potentiating presynaptic release while impairing postsynaptic NMDA receptors
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Amyloid Beta42 oligomers up‐regulate the excitatory synapses by potentiating presynaptic release while impairing postsynaptic NMDA receptors

机译:淀粉样蛋白β42低聚物通过增强突触前释放,同时损害突触后NMDA受体的同时提高兴奋性突触

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Key points NMDA receptors (NMDARs) are key molecules for controlling neuronal plasticity, learning and memory processes. Their function is impaired during Alzheimer's disease (AD) but the exact consequence on synaptic function is not yet fully identified. An important hallmark of AD onset is represented by the neuronal accumulation of Amyloid Beta42 oligomers (Abeta42) that we have recently shown to be responsible for the increased intracellular Ca 2+ concentration through ryanodine receptors (RyRs). Here we characterized the effects of Abeta42 on NMDA synapses showing specific pre‐ and post‐synaptic functional changes that lead to a potentiation of basal and synchronous NMDA synaptic transmission. These overall effects can be abolished by decreasing Ca 2+ release from RyRs with specific inhibitors that we propose as new pharmacological tools for AD treatment. Abstract We have recently shown that Amyloid Beta42 oligomers (Abeta42) cause calcium dysregulation in hippocampal neurons by stimulating Ca 2+ release from ryanodine receptors (RyRs) and inhibiting Ca 2+ entry through NMDA receptors (NMDARs). Here, we found that Abeta42 decrease the average NMDA‐activated inward current and that Ca 2+ entry through NMDARs is accompanied by Ca 2+ release from the stores. The overall amount of intraellular Ca 2+ concentration([Ca 2+ ] i ) increase during NMDA application is 50% associated with RyR opening and 50% with NMDARs activation. Addition of Abeta42 does not change this proportion. We estimated the number of NMDARs expressed in hippocampal neurons and their unitary current. We found that Abeta42 decrease the number of NMDARs without altering their unitary current. Paradoxically, the oligomer increases the size of electrically evoked eEPSCs induced by NMDARs activation. We found that this is the consequence of the increased release probability ( p ) of glutamate and the number of release sites ( N ) of NMDA synapses, while the quantal size ( q ) is significantly decreased as expected from the decreased number of NMDARs. An increased number of release sites induced by Abeta42 is also supported by the increased size of the ready releasable pool (RRPsyn) and by the enhanced percentage of paired pulse depression (PPD). Interestingly, the RyRs inhibitor dantrolene prevents the increase of PPD induced by Abeta42 oligomers. In conclusion, Abeta42 up‐regulates NMDA synaptic responses with a mechanism involving RyRs that occurs during the early stages of Alzheimer's disease (AD) onset. This suggests that new selective modulators of RyRs may be useful for designing effective therapies to treat AD patients.
机译:关键点NMDA受体(NMDARS)是用于控制神经元塑性,学习和记忆过程的关键分子。它们的功能在阿尔茨海默病(AD)期间受损,但尚未完全识别突触功能的确切后果。 AD发作的重要标志是由淀粉样蛋白β42低聚物(ABETA42)的神经元积累表示,所述淀粉样蛋白β42寡聚体(ABETA42),其最近被证明是通过芦橘受体(RYR)的增加的细胞内Ca 2+浓度负责。在这里,我们的特征在于Abeta42对NMDA突触的影响,显示出明确的突触后功能变化,导致基础和同步NMDA突触传输的增强。通过用特异性抑制剂减少Ca 2+释放我们提出的AD治疗的新药理学工具,可以消除这些整体效果。摘要我们最近显示淀粉样蛋白β42低聚物(ABETA42)通过刺激来自瑞那胺受体(RYR)的Ca 2+释放并通过NMDA受体(NMDARS)抑制Ca 2+进入,引起海马神经元中的钙缺乏率。在这里,我们发现ABETA42降低了平均NMDA激活的内向电流,并且通过NMDARS进入CA 2+伴随着来自商店的CA 2+释放。在NMDA施用期间,在NMDA施用期间增加的细胞内Ca 2+浓度([Ca 2+] I)的总量是50%与Ryl开口相关的50%,并且用NMDARS活化50%。添加Abeta42不会改变这个比例。我们估计了海马神经元中表达的Nmdars数量及其单一电流。我们发现ABETA42减少了NMDAR的数量,而不会改变整体电流。矛盾的是,低聚物增加了NMDARS活化诱导的电诱发EEPSC的尺寸。我们发现这是谷氨酸释放概率(P)的结果和NMDA突触的释放位点(N)的数量,而量子尺寸(Q)从降低的NMDARs的数量下降显着降低。由ABETA42诱导的释放位点增加的增加的释放位点也被准备的可释放池(RRPSYN)的尺寸和通过成对脉冲凹陷(PPD)的增强百分比支持。有趣的是,Ryrs抑制剂掺罗琳防止了ABETA42低聚物诱导的PPD的增加。总之,ABETA42上调NMDA突触反应,其机制涉及在阿尔茨海默病(AD)发病的早期阶段发生的RγRS。这表明RYR的新选择性调节剂对于设计有效治疗来治疗AD患者可能是有用的。

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