Characterization of TMEM43 as a novel ion channel
Jang, M. W.; Won, J.; Han, Y.-E.; Lee, J.-H.; Han, A.-r.; Kim, H. M.; Lee, C. J.
Show abstract
The TMEM43 gene has been reported to play supportive but critical roles in human diseases including cancer, arrhythmogenic right ventricular cardiomyopathy (ARVC), and auditory neuropathy spectrum disorder (ANSD). However, direct characterization of the TMEM43 protein itself and its role in the brain remain unexplored. In this study, we demonstrated that TMEM43 confers ion channel activities via the lipid bilayer reconstitution of purified TMEM43 protein and further characterized TMEM43 as a pH-sensing cation channel in the heterologous expression system. TMEM43 was shown to conduct transjunctional potentials between adjacent cells, further facilitating electrical couplings of the gap junctions. In the hippocampus of TMEM43 knockout (KO) mice, we observed a decrease in astrocytic dye diffusion and potassium buffering, an increase in neuronal excitability, and alterations in AMPA/NMDA ratio and LTP. The electrophysiological changes in the KO mice led to a disturbance in memory retrieval which was rescued with TMEM43 overexpression. These results indicate that TMEM43 actively participates in gap junction networks of the hippocampus to prevent neurons from hyperexcitability, which is critical for memory retrieval. Together, our study elucidates the molecular and functional identities of TMEM43 and underscores its role in memory retrieval.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- α1 adrenergic receptor - PKC - Pyk2 - Src signaling boosts L-type Ca2+ channel Cav1.2 activity and long-term potentiation in rodents 94%
- Voltage-clamp fluorometry analysis of structural rearrangements of ATP-gated channel P2X2 upon hyperpolarization 94%
- The molecular appearance of native TRPM7 channel complexes identified by high-resolution proteomics 94%
Similar papers in this journal
Similar papers in this journal
- Intracellular helix-loop-helix domain modulates inactivation kinetics of mammalian TRPV5 and TRPV6 channels. 94%
- Transmembrane polar relay drives the allosteric regulation for ABCG5/G8 sterol transporter 93%
- Validation of six commercial antibodies for detection of heterologous and endogenous TRPM8 ion channel expression 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.