首页> 美国卫生研究院文献>The Journal of Neuroscience >Mechanisms of NMDA Receptor- and Voltage-Gated L-Type Calcium Channel-Dependent Hippocampal LTP Critically Rely on Proteolysis That Is Mediated by Distinct Metalloproteinases
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Mechanisms of NMDA Receptor- and Voltage-Gated L-Type Calcium Channel-Dependent Hippocampal LTP Critically Rely on Proteolysis That Is Mediated by Distinct Metalloproteinases

机译:NMDA受体和电压门控的L型钙通道依赖性海马LTP的机制至关重要地依赖于不同金属蛋白酶介导的蛋白水解作用。

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摘要

Long-term potentiation (LTP) is widely perceived as a memory substrate and in the hippocampal CA3-CA1 pathway, distinct forms of LTP depend on NMDA receptors (nmdaLTP) or L-type voltage-gated calcium channels (vdccLTP). LTP is also known to be effectively regulated by extracellular proteolysis that is mediated by various enzymes. Herein, we investigated whether in mice hippocampal slices these distinct forms of LTP are specifically regulated by different metalloproteinases (MMPs). We found that MMP-3 inhibition or knock-out impaired late-phase LTP in the CA3-CA1 pathway. Interestingly, late-phase LTP was also decreased by MMP-9 blockade. When both MMP-3 and MMP-9 were inhibited, both early- and late-phase LTP was impaired. Using immunoblotting, in situ zymography, and immunofluorescence, we found that LTP induction was associated with an increase in MMP-3 expression and activity in CA1 stratum radiatum. MMP-3 inhibition and knock-out prevented the induction of vdccLTP, with no effect on nmdaLTP. L-type channel-dependent LTP is known to be impaired by hyaluronic acid digestion. We found that slice treatment with hyaluronidase occluded the effect of MMP-3 blockade on LTP, further confirming a critical role for MMP-3 in this form of LTP. In contrast to the CA3-CA1 pathway, LTP in the mossy fiber-CA3 projection did not depend on MMP-3, indicating the pathway specificity of the actions of MMPs. Overall, our study indicates that the activation of perisynaptic MMP-3 supports L-type channel-dependent LTP in the CA1 region, whereas nmdaLTP depends solely on MMP-9.>SIGNIFICANCE STATEMENT Various types of long-term potentiation (LTP) are correlated with distinct phases of memory formation and retrieval, but the underlying molecular signaling pathways remain poorly understood. Extracellular proteases have emerged as key players in neuroplasticity phenomena. The present study found that L-type calcium channel-dependent LTP in the CA3-CA1 hippocampal projection is critically regulated by the activity of matrix metalloprotease 3 (MMP-3), in contrast to NMDAR-dependent LTP regulated by MMP-9. Moreover, the induction of LTP was associated with an increase in MMP-3 expression and activity. Finally, we found that the digestion of hyaluronan, a principal extracellular matrix component, disrupted the MMP-3-dependent component of LTP. These results indicate that distinct MMPs might act as molecular switches for specific types of LTP.
机译:长期增强(LTP)被广泛视为记忆的底物,在海马CA3-CA1途径中,不同形式的LTP取决于NMDA受体(nmdaLTP)或L型电压门控钙通道(vdccLTP)。还已知通过各种酶介导的细胞外蛋白水解有效地调节LTP。本文中,我们研究了小鼠海马切片中这些不同形式的LTP是否受不同的金属蛋白酶(MMP)特异性调节。我们发现MMP-3抑制或敲除损害了CA3-CA1途径中的晚期LTP。有趣的是,后期LTP也因MMP-9封锁而减少。当同时抑制MMP-3和MMP-9时,早期和晚期LTP均受损。使用免疫印迹,原位酶谱和免疫荧光,我们发现LTP诱导与CA1层中MMP-3表达和活性的增加有关。 MMP-3抑制和敲除阻止了vdccLTP的诱导,对nmdaLTP没有影响。已知透明质酸消化会损害L型通道依赖性LTP。我们发现用透明质酸酶进行切片治疗会阻塞MMP-3阻断剂对LTP的作用,进一步证实了MMP-3在这种LTP形式中的关键作用。与CA3-CA1通路相反,在长满苔藓的纤维-CA3投影中的LTP不依赖于MMP-3,表明MMP作用的通路特异性。总体而言,我们的研究表明,突触周突MMP-3的激活在CA1区支持L型通道依赖性LTP,而nmdaLTP仅取决于MMP-9。>意义声明增强(LTP)与记忆形成和恢复的不同阶段相关,但基本的分子信号传导途径仍然知之甚少。细胞外蛋白酶已成为神经可塑性现象的关键参与者。本研究发现,与基质金属蛋白酶3(MMP-3)的活性相比,CA3-CA1海马突起中L型钙通道依赖性LTP受到关键调控,而MMP-9调控NMDAR依赖性LTP则与之相关。此外,LTP的诱导与MMP-3表达和活性的增加有关。最后,我们发现透明质酸(一种主要的细胞外基质成分)的消化破坏了LTP的MMP-3依赖性成分。这些结果表明,不同的MMP可能充当特定类型LTP的分子开关。

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