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首页> 外文期刊>American Journal of Physiology >TMEM16F is a component of a Ca2+-activated Cl- channel but not a volume-sensitive outwardly rectifying Cl- channel
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TMEM16F is a component of a Ca2+-activated Cl- channel but not a volume-sensitive outwardly rectifying Cl- channel

机译:TMEM16F是Ca2 +激活的Cl-通道的组成部分,但不是体积敏感的向外整流Cl-通道的组成部分

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TMEM16 (transmembrane protein 16) proteins, which possess eight putative transmembrane domains with intracellular NH2- and COOH-terminal tails, are thought to comprise a Cl- channel family. The function of TMEM16F, a member of the TMEM16 family, has been greatly controversial. In the present study, we performed whole cell patch-clamp recordings to investigate the function of human TMEM16F. In TMEMl6F-transfected HEK293T cells but not TMEM16K- and mock-transfected cells, activation of membrane currents with strong outward rectification was found to be induced by application of a Ca2+ ionophore, ionomycin, or by an increase in the intracellular free Ca2+ concentration. The free Ca2+ concentration for half-maximal activation of TMEM16F currents was 9.6 μM, which is distinctly higher than that for TMEM16A/B currents. The outwardly rectifying current-voltage relationship for TMEM16F currents was not changed by an increase in the intracellular Ca2+ level, in contrast to TMEM16A/B currents. The Ca2+-activated TMEM16F currents were anion selective, because replacing Cl- with aspartate- in the bathing solution without changing cation concentrations caused a positive shift of the reversal potential. The anion selectivity sequence of the TMEM16F channel was I Br- Cl- F aspartate-. Niflumic acid, a Ca2+-activated Cl- channel blocker, inhibited the TMEMl6F-dependent Cl- currents. Neither overexpression nor knockdown of TMEM16F affected volume-sensitive outwardly rectifying Cl- channel (VSOR) currents activated by osmotic swelling or apoptotic stimulation. These results demonstrate that human TMEM16F is an essential component of a Ca2+-activated Cl- channel with a Ca2+ sensitivity that is distinct from that of TMEM16A/B and that it is not related to VSOR activity.
机译:TMEM16(跨膜蛋白16)蛋白具有八个推定的跨膜结构域,它们具有细胞内NH2-和COOH-末端尾巴,被认为包含Cl通道家族。作为TMEM16家族成员的TMEM16F的功能一直存在很大争议。在本研究中,我们进行了全细胞膜片钳录音来研究人类TMEM16F的功能。在TMEM16F转染的HEK293T细胞中,而不是在TMEM16K和模拟转染的细胞中,发现通过施加Ca 2+离子载体,离子霉素或增加细胞内游离Ca 2+浓度来诱导具有强向外整流作用的膜电流的活化。半激活TMEM16F电流的游离Ca2 +浓度为9.6μM,明显高于TMEM16A / B电流的浓度。与TMEM16A / B电流相反,TMEM16F电流的向外整流电流-电压关系不会因细胞内Ca2 +水平的增加而改变。 Ca2 +活化的TMEM16F电流具有阴离子选择性,因为在不改变阳离子浓度的情况下,用沐浴液中的天冬氨酸替代Cl-会引起反向电位的正移。 TMEM16F通道的阴离子选择性序列为I> Br-> Cl-> F>天冬氨酸-。尼氟酸是一种Ca2 +激活的Cl-通道阻滞剂,可抑制TMEM16F依赖性Cl-电流。 TMEM16F的过表达或敲低都不会影响通过渗透性溶胀或凋亡刺激激活的体积敏感的向外整流Cl通道(VSOR)电流。这些结果表明,人TMEM16F是Ca2 +激活的Cl-通道的基本组成部分,其Ca2 +敏感性不同于TMEM16A / B,并且与VSOR活性无关。

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