首页> 外文期刊>The Journal of biological chemistry >Regulation of the Human Ether-a-go-go-related Gene (hERG) Channel by Rab4 Protein through Neural Precursor Cell-expressed Developmentally Down-regulated Protein 4-2 (Nedd4-2)
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Regulation of the Human Ether-a-go-go-related Gene (hERG) Channel by Rab4 Protein through Neural Precursor Cell-expressed Developmentally Down-regulated Protein 4-2 (Nedd4-2)

机译:通过NaB4蛋白通过神经前体细胞表达的发育下调蛋白4-2(NEDD4-2)调节人醚-A-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-geach。(nedd4-2)

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The human ether-a-go-go-related gene (hERG) encodes the pore-forming α-subunit of the rapidly activating delayed rectifier K+ channel in the heart, which plays a critical role in cardiac action potential repolarization. Dysfunction of IKr causes long QT syndrome, a cardiac electrical disorder that predisposes affected individuals to fatal arrhythmias and sudden death. The homeostasis of hERG channels in the plasma membrane depends on a balance between protein synthesis and degradation. Our recent data indicate that hERG channels undergo enhanced endocytic degradation under low potassium (hypokalemia) conditions. The GTPase Rab4 is known to mediate rapid recycling of various internalized proteins to the plasma membrane. In the present study, we investigated the effect of Rab4 on the expression level of hERG channels. Our data revealed that overexpression of Rab4 decreases the expression level of hERG in the plasma membrane. Rab4 does not affect the expression level of the Kv1.5 or EAG K+ channels. Mechanistically, our data demonstrate that overexpression of Rab4 increases the expression level of endogenous Nedd4-2, a ubiquitin ligase that targets hERG but not Kv1.5 or EAG channels for ubiquitination and degradation. Nedd4-2 undergoes self- ubiquitination and degradation. Rab4 interferes with Nedd4-2 degradation, resulting in an increased expression level of Nedd4-2, which targets hERG. In summary, the present study demonstrates a novel pathway for hERG regulation; Rab4 decreases the hERG density at the plasma membrane by increasing the endogenous Nedd4-2 expression.
机译:人醚-A-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-go-geachα-亚基的心脏中快速活化的延迟整流k +通道α-亚基,其在心脏作用潜在的复极中起着关键作用。 IKR的功能障碍导致QT综合征长,一种心脏电气疾病,易受致命的心律失常和猝死的患者。血浆膜中HERG通道的稳态取决于蛋白质合成和降解之间的平衡。我们最近的数据表明HERG通道在低钾(低钾血症)条件下进行了增强的内吞降解。已知GTPaseRab4介导各种内化蛋白质的快速再循环到血浆膜。在本研究中,我们研究了RAB4对HERG频道表达水平的影响。我们的数据显示RAB4的过度表达降低了质膜中HERG的表达水平。 RAB4不会影响KV1.5或EAG K +通道的表达水平。机械地,我们的数据表明RAB4的过表达增加了内源性NEDD4-2的表达水平,靶向HERG但不是kv1.5或EAG通道的泛素连接酶的表达水平,用于普遍存化和降解。 NEDD4-2经历自我泛滥和降解。 RAB4干扰NEDD4-2降解,导致NEDD4-2的表达水平增加,其靶向HERG。总之,本研究表明了一种新的HERG调节途径; Rab4通过增加内源性NEDD4-2表达来降低质膜处的HERG密度。

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