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Role of Sialidase in Long-Term Potentiation at Mossy Fiber-CA3 Synapses and Hippocampus-Dependent Spatial Memory

机译:唾液酸酶在苔藓纤维CA3突触和海马依赖性空间记忆的长期增强中的作用。

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摘要

Sialic acid bound to glycans in glycolipids and glycoproteins is essential for synaptic plasticity and memory. Sialidase (EC 3.2.1.18), which has 4 isozymes including Neu1, Neu2, Neu3 and Neu4, regulates the sialylation level of glycans by removing sialic acid from sialylglycoconjugate. In the present study, we investigated the distribution of sialidase activity in rat hippocampus and the role of sialidase in hippocampal memory processing. We previously developed a highly sensitive histochemical imaging probe for sialidase activity, BTP3-Neu5Ac. BTP3-Neu5Ac was cleaved efficiently by rat Neu2 and Neu4 at pH 7.3 and by Neu1 and Neu3 at pH 4.6. When a rat hippocampal acute slice was stained with BTP3-Neu5Ac at pH 7.3, mossy fiber terminal fields showed relatively intense sialidase activity. Thus, the role of sialidase in the synaptic plasticity was investigated at mossy fiber terminal fields. The long-term potentiation (LTP) at mossy fiber-CA3 pyramidal cell synapses was impaired by 2,3-dehydro-2-deoxy-N-acetylneuraminic acid (DANA), a sialidase inhibitor. DANA also failed to decrease paired-pulse facilitation after LTP induction. We also investigated the role of sialidase in hippocampus-dependent spatial memory by using the Morris water maze. The escape latency time to reach the platform was prolonged by DANA injection into the hippocampal CA3 region or by knockdown of Neu4 without affecting motility. The results show that the regulation of sialyl signaling by Neu4 is involved in hippocampal memory processing.
机译:与糖脂和糖蛋白中的聚糖结合的唾液酸对于突触可塑性和记忆至关重要。唾液酸酶(EC 3.2.1.18)具有4种同工酶,包括Neu1,Neu2,Neu3和Neu4,它通过从唾液酸糖缀合物中除去唾液酸来调节聚糖的唾液酸化水平。在本研究中,我们调查了唾液酸酶活性在大鼠海马中的分布以及唾液酸酶在海马记忆加工中的作用。我们之前开发了一种针对唾液酸酶活性的高敏感性组织化学成像探针BTP3-Neu5Ac。 BTP3-Neu5Ac在pH 7.3的大鼠Neu2和Neu4以及在pH 4.6的Neu1和Neu3被有效切割。当大鼠海马急性切片在pH 7.3下用BTP3-Neu5Ac染色时,生苔纤维末端区域显示出相对强烈的唾液酸酶活性。因此,在生苔纤维末端区域研究了唾液酸酶在突触可塑性中的作用。唾液酸酶抑制剂2,3-脱氢-2-脱氧-N-乙酰神经氨酸(DANA)损害了长满苔藓的纤维-CA3锥体细胞突触的长时程增强(LTP)。在诱导LTP后,DANA也未能降低配对脉冲的促进作用。我们还通过使用莫里斯水迷宫调查了唾液酸酶在海马依赖性空间记忆中的作用。通过向海马CA3区注射DANA或通过敲除Neu4而不影响运动性,可以延长到达平台的逃避潜伏时间。结果表明,Neu4对唾液酸信号的调节参与了海马的记忆过程。

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