Davee Department of Neurology and Clinical Neurosciences, Northwestern University Feinberg School of Medicine, Chicago, IL, United States of America.
Department of Pediatrics, Northwestern University Feinberg School of Medicine, Chicago, IL, United States of America.
PLoS One. 2018 Feb 21;13(2):e0193012. doi: 10.1371/journal.pone.0193012. eCollection 2018.
Hyperpolarization-activated Cyclic Nucleotide-gated (HCN) channels are important regulators of excitability in neural, cardiac, and other pacemaking cells, which are often altered in disease. In mice, loss of HCN2 leads to cardiac dysrhythmias, persistent spike-wave discharges similar to those seen in absence epilepsy, ataxia, tremor, reduced neuropathic and inflammatory pain, antidepressant-like behavior, infertility, and severely restricted growth. While many of these phenotypes have tissue-specific mechanisms, the cause of restricted growth in HCN2 knockout animals remains unknown. Here, we characterize a novel, 3kb insertion mutation of Hcn2 in the Tremor and Reduced Lifespan 2 (TRLS/2J) mouse that leads to complete loss of HCN2 protein, and we show that this mutation causes many phenotypes similar to other mice lacking HCN2 expression. We then demonstrate that while TRLS/2J mice have low blood glucose levels and impaired growth, dysfunction in hormonal secretion from the pancreas, pituitary, and thyroid are unlikely to lead to this phenotype. Instead, we find that homozygous TRLS/2J mice have abnormal gastrointestinal function that is characterized by less food consumption and delayed gastrointestinal transit as compared to wildtype mice. In summary, a novel mutation in HCN2 likely leads to impaired GI motility, causing the severe growth restriction seen in mice with mutations that eliminate HCN2 expression.
超极化激活环核苷酸门控 (HCN) 通道是神经、心脏和其他起搏细胞兴奋性的重要调节剂,在疾病中经常发生改变。在小鼠中,HCN2 的缺失会导致心律失常、类似于癫痫失神发作的持续性尖波放电、共济失调、震颤、神经性和炎性疼痛减轻、抗抑郁样行为、不孕以及生长严重受限。虽然许多这些表型具有组织特异性机制,但 HCN2 敲除动物生长受限的原因仍不清楚。在这里,我们描述了 Tremor 和 Reduced Lifespan 2 (TRLS/2J) 小鼠中 Hcn2 的一种新的 3kb 插入突变,导致 HCN2 蛋白完全缺失,我们还表明该突变导致许多表型类似于其他缺乏 HCN2 表达的小鼠。然后,我们证明虽然 TRLS/2J 小鼠的血糖水平较低且生长受损,但来自胰腺、垂体和甲状腺的激素分泌功能障碍不太可能导致这种表型。相反,我们发现纯合子 TRLS/2J 小鼠的胃肠道功能异常,其特征是与野生型小鼠相比,食物摄入量减少和胃肠道转运延迟。总之,HCN2 的一种新突变可能导致胃肠道运动障碍,从而导致消除 HCN2 表达的突变小鼠出现严重的生长受限。