Physiological and pathophysiological homeostasis of astroglial channel proteins by Nedd4-2
Altas, B.; Ju, A.; Solis, H. C.; Karaca, S.; Winchenbach, J.; Kaplan, O.; Schwark, M.; Wieser, G. L.; Chaugule, V. K.; Majoul, I.; Hassan, M. A.; Goel, R.; Wojcik, S. M.; Pichler, A.; Mitkovski, M.; de Hoz, L.; Urlaub, H.; Jahn, O.; Saher, G.; Rhee, J.; Kawabe, H.
Show abstract
Nedd4-2 is an E3 ubiquitin ligase, missense mutation of which is related to familial epilepsy, indicating its critical role in regulating neuronal network activity. However, Nedd4-2 substrates involved in neuronal network function have yet to be identified. Using mouse lines lacking Nedd4-1 and Nedd4-2, we identified astrocytic channel proteins inwardly rectifying K+ channel 4.1 (Kir4.1) and Connexin43 as Nedd4-2 substrates. We found that the expression of Kir4.1 and Connexin43 is increased upon conditional deletion of Nedd4-2 in astrocytes, leading to an elevation of astrocytic membrane ion permeability and gap junction activity, with a consequent reduction of {gamma}-oscillatory neuronal network activity. Interestingly, our biochemical data demonstrate that missense mutations found in familial epileptic patients produce gain-of-function of Nedd4-2 gene product. Our data reveal a process of coordinated astrocytic ion channel proteostasis that controls astrocyte function and astrocyte-dependent neuronal network activity, and elucidate a potential mechanism by which aberrant Nedd4-2 function leads to epilepsy.\n\nCONDENSED TITLEUbiquitination of Astrocytic Channels by Nedd4-2\n\nSUMMARYUbiquitination is a key regulatory machinery for protein expression. Our present work provides evidence that astrocytic ion channel proteostasis coordinated by an E3 ubiquitin ligase Nedd4-2 is of particular importance for the maintenance of neuronal network activity.
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