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首页> 外文期刊>Cardiovascular Research >Super-resolution imaging reveals that loss of the C-terminus of connexin43 limits microtubule plus-end capture and NaV1.5 localization at the intercalated disc
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Super-resolution imaging reveals that loss of the C-terminus of connexin43 limits microtubule plus-end capture and NaV1.5 localization at the intercalated disc

机译:超分辨率成像显示,连接蛋白43 C末端的缺失限制了微管正端捕获和插层椎间盘的NaV1.5定位

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Aims It is well known that connexin43 (Cx43) forms gap junctions. We recently showed that Cx43 is also part of a protein-interacting network that regulates excitability. Cardiac-specific truncation of Cx43 C-terminus (mutant 'Cx43D378stop') led to lethal arrhythmias. Cx43D378stop localized to the intercalated disc (ID); cell-cell coupling was normal, but there was significant sodium current (INa) loss. We proposed that the microtubule plus-end is at the crux of the Cx43-INa relation. Yet, specific localization of relevant molecular players was prevented due to the resolution limit of fluorescence microscopy. Here, we use nanoscale imaging to establish: (i) the morphology of clusters formed by the microtubule plus-end tracking protein 'end-binding 1' (EB1), (ii) their position, and that of sodium channel alpha-subunit NaV1.5, relative to N-cadherin-rich sites, and (iii) the role of Cx43 C-terminus on the above-mentioned parameters and on the location-specific function of INa. Methods and results Super-resolution fluorescence localization microscopy in murine adult cardiomyocytes revealed EB1 and NaV1.5 as distinct clusters preferentially localized to N-cadherin-rich sites. Extent of co-localization decreased in Cx43D378stop cells. Macropatch and scanning patch clamp showed reduced INa exclusively at cell end, without changes in unitary conductance. Experiments in Cx43-modified HL1 cells confirmed the relation between Cx43, INa, and microtubules. Conclusions NaV1.5 and EB1 localization at the cell end is Cx43-dependent. Cx43 is part of a molecular complex that determines capture of the microtubule plus-end at the ID, facilitating cargo delivery. These observations link excitability and electrical coupling through a common molecular mechanism.
机译:目的众所周知,连接蛋白43(Cx43)形成间隙连接。我们最近表明,Cx43也是调节兴奋性的蛋白质相互作用网络的一部分。 Cx43 C末端的心脏特异性截短(突变体“ Cx43D378stop”)导致致命的心律失常。 Cx43D378停止本地化到插入盘(ID);细胞-细胞偶联是正常的,但是有明显的钠电流(INa)损失。我们提出微管的正末端在Cx43-INa关系的关键。然而,由于荧光显微镜的分辨率极限,防止了相关分子的特异性定位。在这里,我们使用纳米级成像技术来建立:(i)由微管正向追踪蛋白“末端结合1”(EB1)形成的簇的形态,(ii)它们的位置以及钠通道α亚基NaV1的位置.5,相对于富含N-钙粘蛋白的位点,和(iii)Cx43 C末端在上述参数和INa的位置特异性功能上的作用。方法和结果小鼠成年心肌细胞的超高分辨率荧光定位显微镜显示,EB1和NaV1.5是优先定位于富含N-钙粘蛋白的位点的不同簇。 Cx43D378stop细胞中共定位的程度降低。 Macropatch和扫描膜片钳仅在细胞末端显示INa减少,单位电导没有变化。在Cx43修饰的HL1细胞中进行的实验证实了Cx43,INa和微管之间的关系。结论NaV1.5和EB1在细胞末端的定位是Cx43依赖性的。 Cx43是分子复合物的一部分,该分子复合物决定了ID处微管正端的捕获,从而促进了货物的运送。这些观察通过共同的分子机理将兴奋性和电耦合联系起来。

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