首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Kv4.2 and Accessory Dipeptidyl Peptidase-like Protein 10 (DPP10) Subunit Preferentially Form a 4:2 (Kv4.2:DPP10) Channel Complex
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Kv4.2 and Accessory Dipeptidyl Peptidase-like Protein 10 (DPP10) Subunit Preferentially Form a 4:2 (Kv4.2:DPP10) Channel Complex

机译:Kv4.2和辅助二肽基肽酶样蛋白10(DPP10)亚基优先形成4:2(Kv4.2:DPP10)通道复合物

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摘要

Kv4 is a member of the voltage-gated K+ channel family and forms a complex with various accessory subunits. Dipeptidyl aminopeptidase-like protein (DPP) is one of the auxiliary subunits for the Kv4 channel. Although DPP has been well characterized and is known to increase the current amplitude and accelerate the inactivation and recovery from inactivation of Kv4 current, it remains to be determined how many DPPs bind to one Kv4 channel. To examine whether the expression level of DPP changes the biophysical properties of Kv4, we expressed Kv4.2 and DPP10 in different ratios in Xenopus oocytes and analyzed the currents under two-electrode voltage clamp. The current amplitude and the speed of recovery from inactivation of Kv4.2 changed depending on the co-expression level of DPP10. This raised the possibility that the stoichiometry of the Kv4.2-DPP10 complex is variable and affects the biophysical properties of Kv4.2. We next determined the stoichiometry of DPP10 alone by subunit counting using single-molecule imaging. Approximately 70% of the DPP10 formed dimers in the plasma membrane, and the rest existed as monomers in the absence of Kv4.2. We next determined the stoichiometry of the Kv4.2-DPP10 complex; Kv4.2-mCherry and mEGFP-DPP10 were co-expressed in different ratios and the stoichiometries of Kv4.2-DPP10 complexes were evaluated by the subunit counting method. The stoichiometry of the Kv4.2-DPP10 complex was variable depending on the relative expression level of each subunit, with a preference for 4:2 stoichiometry. This preference may come from the bulky dimeric structure of the extracellular domain of DPP10.
机译:Kv4是电压门控K + 通道家族的成员,与各种辅助亚基形成复合体。二肽氨基肽酶样蛋白(DPP)是Kv4通道的辅助亚基之一。尽管DPP已被很好地表征,并且已知会增加电流幅度并加速Kv4电流的失活和从失活中恢复,但仍有待确定有多少DPP结合到一个Kv4通道。为了检查DPP的表达水平是否改变了Kv4的生物物理特性,我们在非洲爪蟾卵母细胞中以不同比例表达了Kv4.2和DPP10,并在两电极电压钳制下分析了电流。 Kv4.2失活的电流幅度和恢复速度根据DPP10的共表达水平而变化。这增加了Kv4.2-DPP10复合物的化学计量是可变的,并影响Kv4.2的生物物理特性的可能性。接下来,我们通过使用单分子成像通过亚基计数来确定DPP10单独的化学计量。大约70%的DPP10在质膜中形成二聚体,其余的在不存在Kv4.2的情况下以单体形式存在。接下来,我们确定了Kv4.2-DPP10复合物的化学计量。以不同比例共表达Kv4.2-mCherry和mEGFP-DPP10,并通过亚基计数法评估Kv4.2-DPP10复合物的化学计量。 Kv4.2-DPP10复合物的化学计量是可变的,具体取决于每个亚基的相对表达水平,优选4:2化学计量。这种偏好可能来自DPP10胞外域的庞大的二聚体结构。

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