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The unique N-terminal sequence of the BKCa channel α-subunit determines its modulation by β-subunits

机译:BKCa通道α亚基的独特N端序列决定了其对β亚基的调节

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摘要

Large conductance voltage- and Ca2+-activated K+ (BKCa) channels are essential regulators of membrane excitability in a wide variety of cells and tissues. An important mechanism of modulation of BKCa channel activity is its association with auxiliary subunits. In smooth muscle cells, the most predominant regulatory subunit of BKCa channels is the β1-subunit. We have previously described that BKCa channels with distinctive N-terminal ends (starting with the amino acid sequence MDAL, MSSN or MANG) are differentially modulated by the β1-subunit, but not by the β2. Here we extended our studies to understand how the distinct N-terminal regions differentially modulate channel activity by β-subunits. We recorded inside-out single-channel currents from HEK293T cells co-expressing the BKCa containing three N-terminal sequences with two β1-β2 chimeric constructs containing the extracellular loop of β1 or β2, and the transmembrane and cytoplasmic domains of β2 or β1, respectively. Both β chimeric constructs induced leftward shifts of voltage-activation curves of channels starting with MANG and MDAL, in the presence of 10 or 100 μM intracellular Ca2+. However, MSSN showed no shift of the voltage-activation, at the same Ca2+ concentrations. The presence of the extracellular loop of β1 in the chimera resembled results seen with the full β1 subunit, suggesting that the extracellular region of β1 might be responsible for the lack of modulation observed in MSSN. We further studied a poly-serine stretch present in the N-terminal region of MSSN and observed that the voltage-activation curves of BKCa channels either containing or lacking this poly-serine stretch were leftward shifted by β1-subunit in a similar way. Overall, our results provide further insights into the mechanism of modulation of the different N-terminal regions of the BKCa channel by β-subunits and highlight the extension of this region of the channel as a form of modulation of channel activity.
机译:大电导电压和Ca 2 + 激活的K + (BKCa)通道是多种细胞和组织中膜兴奋性的重要调节剂。调节BKCa通道活性的重要机制是其与辅助亚基的关联。在平滑肌细胞中,BKCa通道最主要的调节亚基是β1亚基。先前我们已经描述过,具有独特N末端(从氨基酸序列MDAL,MSSN或MANG开始)的BKCa通道受β1-亚基而不是受β2差异调节。在这里,我们扩展了我们的研究,以了解不同的N末端区域如何通过β亚基差异性调节通道活性。我们记录了来自HEK293T细胞的由内而外的单通道电流,该细胞共表达含有三个N末端序列的BKCa与两个包含β1或β2胞外环的β1-β2嵌合构建体以及β2或β1的跨膜结构和胞质结构域,分别。在存在10或100μM细胞内Ca 2 + 的情况下,两种β嵌合构建体均导致以MANG和MDAL开头的通道的电压激活曲线向左移动。然而,在相同的Ca 2 + 浓度下,MSSN没有显示出电压激活的变化。嵌合体中β1的细胞外环的存在与完整的β1亚基相似,表明β1的细胞外区域可能是MSSN中缺乏调节作用的原因。我们进一步研究了MSSN N端区域中存在的多丝氨酸延伸,并观察到包含或缺乏该多丝氨酸延伸的BKCa通道的电压激活曲线以类似的方式向左移动β1-亚基。总体而言,我们的结果提供了对β亚基调节BKCa通道不同N端区域的机制的进一步见解,并突出了通道这一区域的扩展,作为通道活性调节的一种形式。

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