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Novel Mechanism for Suppression of Hyperpolarization-activated Cyclic Nucleotide-gated Pacemaker Channels by Receptor-like Tyrosine Phosphatase-α*

机译:抑制超极化激活循环的新机制 受体样酪氨酸的核苷酸门控起搏器通道。 磷酸酶-α*

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摘要

We have previously reported an important role of increased tyrosine phosphorylation activity by Src in the modulation of hyperpolarization-activated cyclic nucleotide-gated (HCN) channels. Here we provide evidence showing a novel mechanism of decreased tyrosine phosphorylation on HCN channel properties. We found that the receptor-like protein-tyrosine phosphatase-α (RPTPα) significantly inhibited or eliminated HCN2 channel expression in HEK293 cells. Biochemical evidence showed that the surface expression of HCN2 was remarkably reduced by RPTPα, which was in parallel to the decreased tyrosine phosphorylation of the channel protein. Confocal imaging confirmed that the membrane surface distribution of the HCN2 channel was inhibited by RPTPα. Moreover, we detected the presence of RPTPα proteins in cardiac ventricles with expression levels changed during development. Inhibition of tyrosine phosphatase activity by phenylarsine oxide or sodium orthovanadate shifted ventricular hyperpolarization-activated current (If, generated by HCN channels) activation from nonphysiological voltages into physiological voltages associated with accelerated activation kinetics. In conclusion, we showed a critical role RPTPα plays in HCN channel function via tyrosine dephosphorylation. These findings are also important to neurons where HCN and RPTPα are richly expressed.
机译:我们以前曾报道过Src增强酪氨酸磷酸化活性在调节超极化激活的环状核苷酸门控(HCN)通道中的重要作用。在这里,我们提供证据显示酪氨酸磷酸化对HCN通道特性的降低的新机制。我们发现受体样蛋白酪氨酸磷酸酶-α(RPTPα)显着抑制或消除了HEK293细胞中HCN2通道的表达。生化证据表明,RPTPα显着降低了HCN2的表面表达,这与通道蛋白的酪氨酸磷酸化降低是平行的。共聚焦成像证实,RPTPα抑制了HCN2通道的膜表面分布。此外,我们检测到心室中RPTPα蛋白的存在,并且在发育过程中表达水平发生了变化。苯ar氧化物或原钒酸钠转移的心室超极化激活电流(如果由HCN通道产生)抑制酪氨酸磷酸酶的活性,从非生理电压变为与加速活化动力学相关的生理电压。总之,我们显示了RPTPα通过酪氨酸脱磷酸作用在HCN通道功能中发挥了关键作用。这些发现对于富含HCN和RPTPα的神经元也很重要。

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