SUMOylation regulates Kv2.1 and modulates pancreatic β-cell excitability
Author:
Dai Xiao-Qing12, Kolic Jelena12, Marchi Paolo1, Sipione Simonetta1, MacDonald Patrick E.12
Affiliation:
1. Department of Pharmacology, University of Alberta, Edmonton, Alberta, T6G 2E1 Canada 2. The Alberta Diabetes Institute, University of Alberta, Edmonton, Alberta, T6G 2E1 Canada
Abstract
The covalent attachment of small ubiquitin-like modifier (SUMO) proteins regulates protein localization and function. SUMOylation has recently been shown to modulate ion-channel function; however, the extent to which this affects native currents and cellular excitability remains to be determined. The voltage-dependent K+ (Kv) channel Kv2.1 regulates pancreatic β-cell excitability and insulin secretion. We found that YFP-tagged SUMO1 (SUMO1-YFP) can be immunoprecipitated with Kv2.1 when these two proteins are coexpressed in HEK 293 cells. Furthermore, direct infusion of recombinant SUMO1 peptide or coexpression of SUMO1-YFP inhibited current through cloned Kv2.1 by 80% and 48%, respectively. Insulin-secreting cells express SUMO variants 1 and 3, and expression of the SUMO1-YFP in human β-cells or insulinoma cells inhibited native Kv currents (by 49% and 33%, respectively). Inhibition of the channel resulted from an acceleration of channel inactivation and an inhibition of recovery from inactivation, resulting in the widening of β-cell action potentials and a decreased firing frequency. Finally, these effects on channel function and excitability were augmented by the conjugating enzyme Ubc9 and rescued by the SUMO protease SENP1. Thus, protein SUMOylation can exert a strong inhibitory action on the voltage-dependent K+ channel Kv2.1 and can regulate cellular excitability in native β-cells.
Publisher
The Company of Biologists
Reference19 articles.
1. Benson, M. D., Li, Q. J., Kieckhafer, K., Dudek, D., Whorton, M. R., Sunahara, R. K., Iniguez-Lluhi, J. A. and Martens, J. R. (2007). SUMO modification regulates inactivation of the voltage-gated potassium channel Kv1.5. Proc. Natl. Acad. Sci. USA104, 1805-1810. 2. Braun, M., Ramracheya, R., Bengtsson, M., Zhang, Q., Karanauskaite, J., Partridge, C., Johnson, P. R. and Rorsman, P. (2008). Voltage-gated ion channels in human pancreatic β-cells: electrophysiological characterization and role in insulin secretion. Diabetes57, 1618-1628. 3. Feliciangeli, S., Bendahhou, S., Sandoz, G., Gounon, P., Reichold, M., Warth, R., Lazdunski, M., Barhanin, J. and Lesage, F. (2007). Does sumoylation control K2P1/TWIK1 background K+ channels? Cell130, 563-569. 4. Harder, Z., Zunino, R. and McBride, H. (2004). Sumo1 conjugates mitochondrial substrates and participates in mitochondrial fission. Curr. Biol.14, 340-345. 5. Herrington, J., Sanchez, M., Wunderler, D., Yan, L., Bugianesi, R. M., Dick, I. E., Clark, S. A., Brochu, R. M., Priest, B. T., Kohler, M. G. et al. (2005). Biophysical and pharmacological properties of the voltage-gated potassium current of human pancreatic β-cells. J. Physiol.567, 159-175.
Cited by
78 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|