The Ubiquitin Ligase Adaptor NDFIP1 Interacts with TRESK and Negatively Regulates the Background K+ Current

被引:0
作者
Pergel, Eniko [1 ]
Toth, Daniel J. [1 ,2 ,3 ]
Baukal, Dora [1 ]
Veres, Iren [1 ]
Czirjak, Gabor [1 ]
机构
[1] Semmelwe Univ, Dept Physiol, H-1094 Budapest, Hungary
[2] Hungarian Res Network, HUN REN SU Mol Physiol Res Grp, H-1094 Budapest, Hungary
[3] Semmelwe Univ, H-1094 Budapest, Hungary
关键词
TRESK; K2P; KCNK18; K+ channel; NDFIP; Nedd4; ubiquitin; (L/P) PxY; Xenopus oocyte; CALCIUM-DEPENDENT ACTIVATION; POTASSIUM CHANNEL; NEDD4; FAMILY; DMT1; REGULATION; DOCKING SITE; PROTEINS; GOLGI; CALCINEURIN; EXPRESSION; K(2P)18.1;
D O I
10.3390/ijms25168879
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The TRESK (K2P18.1, KCNK18) background potassium channel is expressed in primary sensory neurons and has been reported to contribute to the regulation of pain sensations. In the present study, we examined the interaction of TRESK with NDFIP1 (Nedd4 family-interacting protein 1) in the Xenopus oocyte expression system by two-electrode voltage clamp and biochemical methods. We showed that the coexpression of NDFIP1 abolished the TRESK current under the condition where the other K+ channels were not affected. Mutations in the three PPxY motifs of NDFIP1, which are responsible for the interaction with the Nedd4 ubiquitin ligase, prevented a reduction in the TRESK current. Furthermore, the overexpression of a dominant-negative Nedd4 construct in the oocytes coexpressing TRESK with NDFIP1 partially reversed the down-modulating effect of the adaptor protein on the K+ current. The biochemical data were also consistent with the functional results. An interaction between epitope-tagged versions of TRESK and NDFIP1 was verified by co-immunoprecipitation experiments. The coexpression of NDFIP1 with TRESK induced the ubiquitination of the channel protein. Altogether, the results suggest that TRESK is directly controlled by and highly sensitive to the activation of the NDFIP1-Nedd4 system. The NDFIP1-mediated reduction in the TRESK component may induce depolarization, increase excitability, and attenuate the calcium dependence of the membrane potential by reducing the calcineurin-activated fraction in the ensemble background K+ current.
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页数:18
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