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Internalized Kv1.5 traffics via Rab-dependent pathways

机译:通过Rab依赖途径实现内部Kv1.5流量

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摘要

Little is known about the postinternalization trafficking of surface-expressed voltage-gated potassium channels. Here, for the first time, we investigate into which of four major trafficking pathways a voltage-gated potassium channel is targeted after internalization. In both a cardiac myoblast cell line and in HEK293 cells, channels were found to internalize and to recycle quickly. Upon internalization, Kv1.5 rapidly associated with Rab5- and Rab4-positive endosomes, suggesting that the channel is internalized via a Rab5-dependent pathway and rapidly targeted for recycling to the plasma membrane. Nevertheless, as indicated by colocalization with Rab7, a fraction of the channels are targeted for degradation. Recycling through perinuclear endosomes is limited; colocalization with Rab11 was evident only after 24 h postsurface labelling. Expression of dominant negative (DN) Rab constructs significantly increased Kv1.5 functional expression. In the myoblast line, Rab5DN increased Kv1.5 current densities to 1305 ± 213 pA pF−1 from control 675 ± 81.6 pA pF−1. Rab4DN similarly increased Kv1.5 currents to 1382 ± 155 pA pF−1 from the control 522 ± 82.7 pA pF−1 at +80 mV. Expression of the Rab7DN increased Kv1.5 currents 2.5-fold in HEK293 cells but had no significant effect in H9c2 myoblasts, and, unlike the other Rab GTPases tested, over-expression of wild-type Rab7 decreased Kv1.5 currents in the myoblast line. Densities fell to 573 ± 96.3 pA pF−1 from the control 869 ± 135.5 pA pF−1. The Rab11DN was slow to affect Kv1.5 currents but had comparable effects to other dominant negative constructs after 48 h. With the exception of Rab11DN and nocodazole, the effects of interference with microtubule-dependent trafficking by nocodazole or p50 overexpression were not additive with the Rab dominant negatives. The Rab GTPases thus constitute dynamic targets by which cells may modulate Kv1.5 functional expression.
机译:关于表面表达的电压门控钾通道的内在化后运输的了解甚少。在这里,我们首次研究了内化后靶向电压门控钾通道的四个主要贩运途径中的哪个。在心肌成肌细胞系和HEK293细胞中,均发现通道能够内化并快速回收。内化后,Kv1.5快速与Rab5和Rab4阳性内体结合,表明该通道通过Rab5依赖性途径内化,并迅速靶向回收到质膜。然而,正如与Rab7的共定位所表明的那样,一部分通道被靶向降解。通过核周内体的回收是有限的;仅在表面标记后24小时后,与Rab11的共定位才明显。显性负(DN)Rab构建体的表达显着提高Kv1.5功能表达。在成肌细胞系中,Rab5DN将Kv1.5电流密度从对照675±81.6 pA pF-1增至1305±213 pA pF-1。 Rab4DN同样在+80 mV时将Kv1.5电流从控制522±82.7 pA pF-1增大到1382±155 pA pF-1。 Rab7DN的表达使HEK293细胞中的Kv1.5电流增加了2.5倍,但对H9c2成肌细胞没有显着影响,并且与测试的其他Rab GTPases不同,野生型Rab7的过表达降低了成肌细胞系中的Kv1.5电流。 。密度从对照869±135.5 pA pF-1降至573±96.3 pA pF-1。 Rab11DN影响Kv1.5电流的速度较慢,但​​在48小时后的效果可与其他优势阴性构建体相媲美。除Rab11DN和诺考达唑外,诺考达唑或p50过表达干扰微管依赖性运输的影响与Rab显性阴性无关。 Rab GTPases因此构成细胞可调节Kv1.5功能表达的动态靶标。

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