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Activity-dependent heteromerization of the hyperpolarization-activated cyclic-nucleotide gated (HCN) channels: role of N-linked glycosylation

机译:超极化激活的环核苷酸门控(HCN)通道的活性依赖性异源化:N-联糖基化的作用

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摘要

Formation of heteromeric complexes of ion channels via co-assembly of different subunit isoforms provides an important mechanism for enhanced channel diversity. We have previously demonstrated co-association of the hyperpolarization activated cyclic-nucleotide gated (HCN1/HCN2) channel isoforms that was regulated by network (seizure) activity in developing hippocampus. However, the mechanisms that underlie this augmented expression of heteromeric complexes have remained unknown. Glycosylation of the HCN channels has been implicated in the stabilization and membrane expression of heteromeric HCN1/HCN2 constructs in heterologous systems. Therefore, we used in vivo and in vitro systems to test the hypothesis that activity modifies HCN1/HCN2 heteromerization in neurons by modulating the glycosylation state of the channel molecules. Seizure-like activity (SA) increased HCN1/HCN2 heteromerization in hippocampus in vivo as well as in hippocampal organotypic slice cultures. This activity increased the abundance of glycosylated HCN1 but not HCN2-channel molecules. In addition, glycosylated HCN1 channels were preferentially co-immunoprecipitated with the HCN2 isoforms. Provoking SA in vitro in the presence of the N-linked glycosylation blocker tunicamycin abrogated the activity-dependent increase of HCN1/HCN2 heteromerization. Thus, hippocampal HCN1 molecules have a significantly higher probability of being glycosylated after SA, and this might promote a stable heteromerization with HCN2.
机译:通过不同亚基同工型的共组装形成离子通道的异源复合物,为增强通道多样性提供了重要的机制。我们以前已经证明了超极化激活的环状核苷酸门控(HCN1 / HCN2)通道同工型的关联,该通道同工型在发育中的海马中受到网络(癫痫发作)活性的调节。然而,这种增加的异构体复合物表达基础的机制仍然未知。 HCN通道的糖基化与异源系统中HCN1 / HCN2异源构建体的稳定和膜表达有关。因此,我们使用体内和体外系统来测试这一假设,即活性通过调节通道分子的糖基化状态来修饰神经元中的HCN1 / HCN2异聚。癫痫样活动(SA)增加体内和海马器官型切片培养物中海马HCN1 / HCN2异聚。这种活性增加了糖基化的HCN1的丰度,但没有增加HCN2通道分子的丰度。此外,糖基化的HCN1通道优先与HCN2亚型共免疫沉淀。在存在N-联糖基化阻滞剂衣霉素的情况下,在体外激发SA可以消除HCN1 / HCN2异构化的活性依赖性增加。因此,SA后海马的HCN1分子被糖基化的可能性明显更高,这可能促进与HCN2的稳定异源化。

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