Department of Biophysics and Cell Biology, Faculty of Medicine, University of Debrecen, 400, 1 Egyetem sq., Debrecen, 4032, Hungary.
Department of Pediatrics, Faculty of Medicine, University of Debrecen, 400, 1 Egyetem sq., Debrecen, 4032, Hungary.
Sci Rep. 2018 Apr 12;8(1):5937. doi: 10.1038/s41598-018-24159-8.
Kv1.3 channels are expressed in several cell types including immune cells, such as T lymphocytes. The targeting of Kv1.3 to the plasma membrane is essential for T cell clonal expansion and assumed to be guided by the C-terminus of the channel. Using two point mutants of Kv1.3 with remarkably different features compared to the wild-type Kv1.3 (A413V and H399K having fast inactivation kinetics and tetraethylammonium-insensitivity, respectively) we showed that both Kv1.3 channel variants target to the membrane when the C-terminus was truncated right after the conserved HRET sequence and produce currents identical to those with a full-length C-terminus. The truncation before the HRET sequence (NOHRET channels) resulted in reduced membrane-targeting but non-functional phenotypes. NOHRET channels did not display gating currents, and coexpression with wild-type Kv1.3 did not rescue the NOHRET-A413V phenotype, no heteromeric current was observed. Interestingly, mutants of wild-type Kv1.3 lacking HRET(E) (deletion) or substituted with five alanines for the HRET(E) motif expressed current indistinguishable from the wild-type. These results demonstrate that the C-terminal region of Kv1.3 immediately proximal to the S6 helix is required for the activation gating and conduction, whereas the presence of the distal region of the C-terminus is not exclusively required for trafficking of Kv1.3 to the plasma membrane.
Kv1.3 通道在几种细胞类型中表达,包括免疫细胞,如 T 淋巴细胞。Kv1.3 靶向质膜对于 T 细胞克隆扩增至关重要,并且假定由通道的 C 末端指导。使用与野生型 Kv1.3 相比具有显着不同特征的 Kv1.3 的两个点突变体(A413V 和 H399K 分别具有快速失活动力学和四乙基铵不敏感性),我们表明当 C 末端在保守的 HRET 序列之后立即被截断时,两种 Kv1.3 通道变体都靶向质膜,并产生与全长 C 末端相同的电流。在 HRET 序列之前的截断(NOHRET 通道)导致靶向质膜的能力降低,但表现出非功能性表型。NOHRET 通道不显示门控电流,并且与野生型 Kv1.3 的共表达不能挽救 NOHRET-A413V 表型,没有观察到异源电流。有趣的是,缺乏 HRET(E)(缺失)或用五个丙氨酸取代 HRET(E)基序的野生型 Kv1.3 突变体表达的电流与野生型无异。这些结果表明,Kv1.3 的 C 末端区域紧邻 S6 螺旋,对于激活门控和传导是必需的,而 C 末端的远端区域的存在对于 Kv1.3 向质膜的运输并不是唯一必需的。