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β-淀粉样前体蛋白裂解酶 1 抑制通过癫痫相关蛋白 6 损害突触可塑性。

Beta-Site Amyloid Precursor Protein Cleaving Enzyme 1 Inhibition Impairs Synaptic Plasticity via Seizure Protein 6.

机构信息

German Center for Neurodegenerative Diseases, Munich, Germany; Center for Neuropathology and Prion Research, Munich, Germany; Munich Cluster for Systems Neurology, Munich, Germany.

Graduate School of Systemic Neuroscience, Ludwig-Maximilians University Munich, Munich, Germany.

出版信息

Biol Psychiatry. 2018 Mar 1;83(5):428-437. doi: 10.1016/j.biopsych.2016.12.023. Epub 2016 Dec 26.

Abstract

BACKGROUND

Beta-site amyloid precursor protein cleaving enzyme 1 (BACE1) is a promising drug target for the treatment of Alzheimer's disease. Prolonged BACE1 inhibition interferes with structural and functional synaptic plasticity in mice, most likely by altering the metabolism of BACE1 substrates. Seizure protein 6 (SEZ6) is predominantly cleaved by BACE1, and Sez6 knockout mice share some phenotypes with BACE1 inhibitor-treated mice. We investigated whether SEZ6 is involved in BACE1 inhibition-induced structural and functional synaptic alterations.

METHODS

The function of NB-360, a novel blood-brain barrier penetrant and orally available BACE1 inhibitor, was verified by immunoblotting. In vivo microscopy was applied to monitor the impact of long-term pharmacological BACE1 inhibition on dendritic spines in the cerebral cortex of constitutive and conditional Sez6 knockout mice. Finally, synaptic functions were characterized using electrophysiological field recordings in hippocampal slices.

RESULTS

BACE1 enzymatic activity was strongly suppressed by NB-360. Prolonged NB-360 treatment caused a reversible spine density reduction in wild-type mice, but it did not affect Sez6 mice. Knocking out Sez6 in a small subset of mature neurons also prevented the structural postsynaptic changes induced by BACE1 inhibition. Hippocampal long-term potentiation was decreased in both chronic BACE1 inhibitor-treated wild-type mice and vehicle-treated Sez6 mice. However, chronic NB-360 treatment did not alter long-term potentiation in CA1 neurons of Sez6 mice.

CONCLUSIONS

Our results suggest that SEZ6 plays an important role in maintaining normal dendritic spine dynamics. Furthermore, SEZ6 is involved in BACE1 inhibition-induced structural and functional synaptic alterations.

摘要

背景

β-位淀粉样前体蛋白裂解酶 1(BACE1)是治疗阿尔茨海默病的有前途的药物靶点。BACE1 的持续抑制会干扰小鼠的结构和功能突触可塑性,这很可能是通过改变 BACE1 底物的代谢来实现的。Seizure protein 6(SEZ6)主要被 BACE1 切割,Sez6 敲除小鼠与 BACE1 抑制剂处理的小鼠具有一些表型相似。我们研究了 SEZ6 是否参与 BACE1 抑制诱导的结构和功能突触改变。

方法

通过免疫印迹验证了新型血脑屏障穿透性和口服 BACE1 抑制剂 NB-360 的功能。应用活体显微镜监测长期药理学 BACE1 抑制对组成型和条件性 Sez6 敲除小鼠大脑皮层树突棘的影响。最后,使用海马切片中的电生理场记录来表征突触功能。

结果

NB-360 强烈抑制 BACE1 的酶活性。NB-360 的长期处理导致野生型小鼠的棘密度可逆减少,但对 Sez6 小鼠没有影响。在一小部分成熟神经元中敲除 Sez6 也阻止了 BACE1 抑制诱导的结构后突触变化。慢性 BACE1 抑制剂处理的野生型小鼠和载体处理的 Sez6 小鼠的海马长时程增强都减少了。然而,慢性 NB-360 处理并没有改变 Sez6 小鼠 CA1 神经元中的长时程增强。

结论

我们的结果表明 SEZ6 在维持正常树突棘动力学方面发挥重要作用。此外,SEZ6 参与 BACE1 抑制诱导的结构和功能突触改变。

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