4chv Citations

Ligand-induced structural changes in the cyclic nucleotide-modulated potassium channel MloK1.

Abstract

Cyclic nucleotide-modulated ion channels are important for signal transduction and pacemaking in eukaryotes. The molecular determinants of ligand gating in these channels are still unknown, mainly because of a lack of direct structural information. Here we report ligand-induced conformational changes in full-length MloK1, a cyclic nucleotide-modulated potassium channel from the bacterium Mesorhizobium loti, analysed by electron crystallography and atomic force microscopy. Upon cAMP binding, the cyclic nucleotide-binding domains move vertically towards the membrane, and directly contact the S1-S4 voltage sensor domains. This is accompanied by a significant shift and tilt of the voltage sensor domain helices. In both states, the inner pore-lining helices are in an 'open' conformation. We propose a mechanism in which ligand binding can favour pore opening via a direct interaction between the cyclic nucleotide-binding domains and voltage sensors. This offers a simple mechanistic hypothesis for the coupling between ligand gating and voltage sensing in eukaryotic HCN channels.

Reviews - 4chv mentioned but not cited (1)

Articles - 4chv mentioned but not cited (6)



Reviews citing this publication (7)

  1. Structural insights into the mechanisms of CNBD channel function. James ZM, Zagotta WN. J Gen Physiol 150 225-244 (2018)
  2. Potassium channels in the heart: structure, function and regulation. Grandi E, Sanguinetti MC, Bartos DC, Bers DM, Chen-Izu Y, Chiamvimonvat N, Colecraft HM, Delisle BP, Heijman J, Navedo MF, Noskov S, Proenza C, Vandenberg JI, Yarov-Yarovoy V. J Physiol 595 2209-2228 (2017)
  3. Directly watching biomolecules in action by high-speed atomic force microscopy. Ando T. Biophys Rev 9 421-429 (2017)
  4. MicroED opens a new era for biological structure determination. Nannenga BL, Gonen T. Curr Opin Struct Biol 40 128-135 (2016)
  5. Nanoscale monitoring of drug actions on cell membrane using atomic force microscopy. Li M, Liu LQ, Xi N, Wang YC. Acta Pharmacol Sin 36 769-782 (2015)
  6. Taking the measure of MicroED. Rodriguez JA, Eisenberg DS, Gonen T. Curr Opin Struct Biol 46 79-86 (2017)
  7. The importance of dynamics in integrative modeling of supramolecular assemblies. Tamò GE, Abriata LA, Dal Peraro M. Curr Opin Struct Biol 31 28-34 (2015)

Articles citing this publication (24)