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其相互作用蛋白α-辅肌动蛋白2和细丝蛋白A增强SK2通道表面膜表达的独特亚细胞机制。

Distinct subcellular mechanisms for the enhancement of the surface membrane expression of SK2 channel by its interacting proteins, α-actinin2 and filamin A.

作者信息

Zhang Zheng, Ledford Hannah A, Park Seojin, Wang Wenying, Rafizadeh Sassan, Kim Hyo Jeong, Xu Wilson, Lu Ling, Lau Victor C, Knowlton Anne A, Zhang Xiao-Dong, Yamoah Ebenezer N, Chiamvimonvat Nipavan

机构信息

Division of Cardiovascular Medicine, Department of Internal Medicine, University of California, Davis, CA, 95616, USA.

Department of Physiology and Cell Biology, University of Nevada, Reno, NV, 89557, USA.

出版信息

J Physiol. 2017 Apr 1;595(7):2271-2284. doi: 10.1113/JP272942. Epub 2016 Dec 7.

Abstract

KEY POINTS

Ion channels are transmembrane proteins that are synthesized within the cells but need to be trafficked to the cell membrane for the channels to function. Small-conductance, Ca -activated K channels (SK, K 2) are unique subclasses of K channels that are regulated by Ca inside the cells; they are expressed in human atrial myocytes and responsible for shaping atrial action potentials. We have previously shown that interacting proteins of SK2 channels are important for channel trafficking to the membrane. Using total internal reflection fluorescence (TIRF) and confocal microscopy, we studied the mechanisms by which the surface membrane localization of SK2 (K 2.2) channels is regulated by their interacting proteins. Understanding the mechanisms of SK channel trafficking may provide new insights into the regulation controlling the repolarization of atrial myocytes.

ABSTRACT

The normal function of ion channels depends critically on the precise subcellular localization and the number of channel proteins on the cell surface membrane. Small-conductance, Ca -activated K channels (SK, K 2) are expressed in human atrial myocytes and are responsible for shaping atrial action potentials. Understanding the mechanisms of SK channel trafficking may provide new insights into the regulation controlling the repolarization of atrial myocytes. We have previously demonstrated that the C- and N-termini of SK2 channels interact with the actin-binding proteins α-actinin2 and filamin A, respectively. However, the roles of the interacting proteins on SK2 channel trafficking remain incompletely understood. Using total internal reflection fluorescence (TIRF) microscopy, we studied the mechanisms of surface membrane localization of SK2 (K 2.2) channels. When SK2 channels were co-expressed with filamin A or α-actinin2, the membrane fluorescence intensity of SK2 channels increased significantly. We next tested the effects of primaquine and dynasore on SK2 channels expression. Treatment with primaquine significantly reduced the membrane expression of SK2 channels. In contrast, treatment with dynasore failed to alter the surface membrane expression of SK2 channels. Further investigations using constitutively active or dominant-negative forms of Rab GTPases provided additional insights into the distinct roles of the two cytoskeletal proteins on the recycling processes of SK2 channels from endosomes. α-Actinin2 facilitated recycling of SK2 channels from both early and recycling endosomes while filamin A probably aids the recycling of SK2 channels from recycling endosomes.

摘要

关键点

离子通道是在细胞内合成的跨膜蛋白,但需要转运到细胞膜才能发挥通道功能。小电导钙激活钾通道(SK,K2)是钾通道的独特亚类,受细胞内钙离子调节;它们在人心房肌细胞中表达,负责塑造心房动作电位。我们之前已经表明,SK2通道的相互作用蛋白对于通道向细胞膜的转运很重要。利用全内反射荧光(TIRF)和共聚焦显微镜,我们研究了SK2(K2.2)通道的表面膜定位受其相互作用蛋白调控的机制。了解SK通道转运机制可能为控制心房肌细胞复极化的调节提供新的见解。

摘要

离子通道的正常功能关键取决于其在亚细胞水平的精确定位以及细胞表面膜上通道蛋白的数量。小电导钙激活钾通道(SK,K2)在人心房肌细胞中表达,负责塑造心房动作电位。了解SK通道转运机制可能为控制心房肌细胞复极化的调节提供新的见解。我们之前已经证明,SK2通道的C端和N端分别与肌动蛋白结合蛋白α辅肌动蛋白2和细丝蛋白A相互作用。然而,这些相互作用蛋白在SK2通道转运中的作用仍不完全清楚。利用全内反射荧光(TIRF)显微镜,我们研究了SK2(K2.2)通道表面膜定位的机制。当SK2通道与细丝蛋白A或α辅肌动蛋白2共表达时,SK2通道的膜荧光强度显著增加。接下来,我们测试了伯氨喹和dynasore对SK2通道表达的影响。用伯氨喹处理显著降低了SK2通道的膜表达。相比之下,用dynasore处理未能改变SK2通道的表面膜表达。使用组成型活性或显性负性形式的Rab GTPases进行的进一步研究,为这两种细胞骨架蛋白在SK2通道从内体的再循环过程中的不同作用提供了更多见解。α辅肌动蛋白2促进SK2通道从早期内体和再循环内体的再循环,而细丝蛋白A可能有助于SK2通道从再循环内体的再循环。

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