Physiological Institute, University of Regensburg, University Street 31, D-93053 Regensburg, Germany.
Int J Mol Sci. 2024 Sep 17;25(18):9998. doi: 10.3390/ijms25189998.
Anoctamin 6 (ANO6, TMEM16F) is a phospholipid (PL) scramblase that moves PLs between both plasma membrane (PM) leaflets and operates as an ion channel. It plays a role in development and is essential for hemostasis, bone mineralization and immune defense. However, ANO6 has also been shown to regulate cellular Ca signaling and PM compartments, thereby controlling the expression of ion channels such as CFTR. Given these pleiotropic effects, we investigated the functional interdependence of the ubiquitous ANO6 with other commonly co-expressed anoctamins. As most expression studies on anoctamins use HEK293 human embryonic kidney cells, we compared ion currents, PL scrambling and Ca signals induced by the overexpression of anoctamins in HEK293 wild-type parental and ANO6-knockout cells. The data suggest that the endogenous expression of ANO6 significantly affects the results obtained from overexpressed anoctamins, particularly after increasing intracellular Ca. Thus, a significant interdependence of anoctamins may influence the interpretation of data obtained from the functional analysis of overexpressed anoctamins.
Anoctamin 6 (ANO6, TMEM16F) 是一种磷脂 (PL) 翻转酶,可将 PL 在质膜 (PM) 两叶之间移动,并作为离子通道发挥作用。它在发育过程中发挥作用,对止血、骨矿化和免疫防御至关重要。然而,ANO6 也被证明可以调节细胞内 Ca 信号和 PM 区室,从而控制 CFTR 等离子通道的表达。鉴于这些多效性效应,我们研究了普遍存在的 ANO6 与其他通常共同表达的 anoctamins 之间的功能相互依赖性。由于大多数 anoctamins 的表达研究都使用人胚肾 293 细胞 (HEK293),因此我们比较了在 HEK293 野生型亲本和 ANO6 敲除细胞中转染 anoctamins 诱导的离子电流、PL 翻转和 Ca 信号。数据表明,内源性 ANO6 的表达显著影响从过表达的 anoctamins 获得的结果,尤其是在增加细胞内 Ca 后。因此,anoctamins 的显著相互依赖性可能会影响从过表达的 anoctamins 的功能分析中获得的数据的解释。