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HCN channels are a novel therapeutic target for cognitive dysfunction in Neurofibromatosis type 1.

机译:HCN通道是1型神经纤维瘤病认知功能障碍的新型治疗靶点。

摘要

Cognitive impairments are a major clinical feature of the common neurogenetic disease neurofibromatosis type 1 (NF1). Previous studies have demonstrated that increased neuronal inhibition underlies the learning deficits in NF1, however, the molecular mechanism underlying this cell-type specificity has remained unknown. Here, we identify an interneuron-specific attenuation of hyperpolarization-activated cyclic nucleotide-gated (HCN) current as the cause for increased inhibition in Nf1 mutants. Mechanistically, we demonstrate that HCN1 is a novel NF1-interacting protein for which loss of NF1 results in a concomitant increase of interneuron excitability. Furthermore, the HCN channel agonist lamotrigine rescued the electrophysiological and cognitive deficits in two independent Nf1 mouse models, thereby establishing the importance of HCN channel dysfunction in NF1. Together, our results provide detailed mechanistic insights into the pathophysiology of NF1-associated cognitive defects, and identify a novel target for clinical drug development.
机译:认知障碍是常见的神经遗传性疾病1型神经纤维瘤病(NF1)的主要临床特征。先前的研究表明,神经元抑制作用的增加是NF1学习缺陷的基础,但是,这种细胞类型特异性的分子机制仍然未知。在这里,我们确定超极化激活的环状核苷酸门控(HCN)电流的特定于神经元间的衰减是Nf1突变体中抑制作用增加的原因。从机理上讲,我们证明HCN1是一种新型的NF1相互作用蛋白,NF1的丢失会导致中间神经元兴奋性的同时增加。此外,HCN通道激动剂拉莫三嗪在两个独立的Nf1小鼠模型中挽救了电生理和认知缺陷,从而确立了HCN通道功能障碍在NF1中的重要性。在一起,我们的结果提供了对NF1相关的认知缺陷的病理生理学的详细机制的见解,并确定临床药物开发的新目标。

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