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BK channel density is regulated by endoplasmic reticulum associated degradation and influenced by the SKN-1A/NRF1 transcription factor

机译:BK信道密度由内质网相关的降解和受SKN-1A / NRF1转录因子的影响

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Ion channels are present at specific levels within subcellular compartments of excitable cells. The regulation of ion channel trafficking and targeting is an effective way to control cell excitability. The BK channel is a calcium-activated potassium channel that serves as a negative feedback mechanism at presynaptic axon terminals and sites of muscle excitation. The C . elegans BK channel ortholog, SLO-1, requires an endoplasmic reticulum (ER) membrane protein for efficient anterograde transport to these locations. Here, we found that, in the absence of this ER membrane protein, SLO-1 channels that are seemingly normally folded and expressed at physiological levels undergo SEL-11/HRD1-mediated ER-associated degradation (ERAD). This SLO-1 degradation is also indirectly regulated by a SKN-1A/NRF1-mediated transcriptional mechanism that controls proteasome levels. Therefore, our data indicate that SLO-1 channel density is regulated by the competitive balance between the efficiency of ER trafficking machinery and the capacity of ERAD.
机译:离子通道存在于可激发细胞的亚细胞间隔内的特定水平。离子通道运输和靶向的调节是控制细胞兴奋性的有效方法。 BK通道是一种钙激活的钾通道,用作突触前轴突端子和肌肉激发部位的负反馈机制。 c。 elegans bk沟道ortholog,slo-1需要内质网(ER)膜蛋白,用于高效向这些地点运输。在这里,我们发现,在不存在这种ER膜蛋白的情况下,在生理水平似乎通常折叠和表达的SLO-1通道经历SEL-11 / HRD1介导的ER相关的降解(ERAD)。该SLO-1降解也是间接地通过控制蛋白酶体水平的SKN-1A / NRF1介导的转录机制来调节。因此,我们的数据表明,SLO-1通道密度受到ER贩运机械效率与ERAD能力之间的竞争平衡。

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