Legends: | Link to a Model | Reference cited by multiple papers |
 • | HH model neuron of the Suprachiasmatic Nucleus including a persistent Na+ channel (Paul et al 2016) |
References and models cited by this paper | References and models that cite this paper | |||||||||
Aman TK, Grieco-Calub TM, Chen C, Rusconi R, Slat EA, Isom LL, Raman IM (2009) Regulation of persistent Na current by interactions between beta subunits of voltage-gated Na channels. J Neurosci 29:2027-42 [Journal] [PubMed] Belle MD, Diekman CO, Forger DB, Piggins HD (2009) Daily electrical silencing in the mammalian circadian clock. Science 326:281-4 [Journal] [PubMed] Besing RC, Hablitz LM, Paul JR, Johnson RL, Prosser RA, Gamble KL (2012) Neuropeptide Y-induced phase shifts of PER2::LUC rhythms are mediated by long-term suppression of neuronal excitability in a phase-specific manner. Chronobiol Int 29:91-102 [Journal] [PubMed] Besing RC, Paul JR, Hablitz LM, Rogers CO, Johnson RL, Young ME, Gamble KL (2015) Circadian rhythmicity of active GSK3 isoforms modulates molecular clock gene rhythms in the suprachiasmatic nucleus. J Biol Rhythms 30:155-60 [Journal] [PubMed] Beurel E, Grieco SF, Jope RS (2015) Glycogen synthase kinase-3 (GSK3): regulation, actions, and diseases. Pharmacol Ther 148:114-31 [Journal] [PubMed] Beurel E, Michalek SM, Jope RS (2010) Innate and adaptive immune responses regulated by glycogen synthase kinase-3 (GSK3). Trends Immunol 31:24-31 [Journal] [PubMed] Can A, Schulze TG, Gould TD (2014) Molecular actions and clinical pharmacogenetics of lithium therapy. Pharmacol Biochem Behav 123:3-16 [Journal] [PubMed] Carter BC, Giessel AJ, Sabatini BL, Bean BP (2012) Transient sodium current at subthreshold voltages: activation by EPSP waveforms. Neuron 75:1081-93 [Journal] [PubMed] Colbert CM (2004) Is resurgent Na+ current an alpha-subunit-specific property? Maybe not. Focus on "Sodium currents in subthalamic nucleus neurons from Nav1.6-null mice". J Neurophysiol 92:672 [Journal] [PubMed] Colwell CS (2011) Linking neural activity and molecular oscillations in the SCN. Nat Rev Neurosci 12:553-69 [Journal] [PubMed] DeWoskin D, Myung J, Belle MD, Piggins HD, Takumi T, Forger DB (2015) Distinct roles for GABA across multiple timescales in mammalian circadian timekeeping. Proc Natl Acad Sci U S A 112:E3911-9 [Journal] [PubMed]
Dibner C, Schibler U, Albrecht U (2010) The mammalian circadian timing system: organization and coordination of central and peripheral clocks. Annu Rev Physiol 72:517-49 [Journal] [PubMed] Diekman CO, Belle MD, Irwin RP, Allen CN, Piggins HD, Forger DB (2013) Causes and consequences of hyperexcitation in central clock neurons. PLoS Comput Biol 9:e1003196 [Journal] [PubMed]
Do MT, Bean BP (2003) Subthreshold sodium currents and pacemaking of subthalamic neurons: modulation by slow inactivation. Neuron 39:109-20 [PubMed] Eijkelkamp N, Linley JE, Baker MD, Minett MS, Cregg R, Werdehausen R, Rugiero F, Wood JN (2012) Neurological perspectives on voltage-gated sodium channels. Brain 135:2585-612 [Journal] [PubMed] Enomoto A, Han JM, Hsiao CF, Chandler SH (2007) Sodium currents in mesencephalic trigeminal neurons from Nav1.6 null mice. J Neurophysiol 98:710-9 [Journal] [PubMed] Estacion M, Gasser A, Dib-Hajj SD, Waxman SG (2010) A sodium channel mutation linked to epilepsy increases ramp and persistent current of Nav1.3 and induces hyperexcitability in hippocampal neurons. Exp Neurol 224:362-8 [Journal] [PubMed] Estacion M, Waxman SG (2013) The response of Na(V)1.3 sodium channels to ramp stimuli: multiple components and mechanisms. J Neurophysiol 109:306-14 [Journal] [PubMed] Farajnia S, Michel S, Deboer T, vanderLeest HT, Houben T, Rohling JH, Ramkisoensing A, Yasenkov R, Meijer JH (2012) Evidence for neuronal desynchrony in the aged suprachiasmatic nucleus clock. J Neurosci 32:5891-9 [Journal] [PubMed] Flourakis M, Kula-Eversole E, Hutchison AL, Han TH, Aranda K, Moose DL, White KP, Dinner AR, Lear BC, Ren D, Diekman CO, Raman IM, Allada R (2015) A Conserved Bicycle Model for Circadian Clock Control of Membrane Excitability. Cell 162:836-48 [Journal] [PubMed] Gamble KL, Kudo T, Colwell CS, McMahon DG (2011) Gastrin-releasing peptide modulates fast delayed rectifier potassium current in Per1-expressing SCN neurons. J Biol Rhythms 26:99-106 [Journal] [PubMed] Hablitz LM, Molzof HE, Paul JR, Johnson RL, Gamble KL (2014) Suprachiasmatic nucleus function and circadian entrainment are modulated by G protein-coupled inwardly rectifying (GIRK) channels. J Physiol 592:5079-92 [Journal] [PubMed] Hur EM, Zhou FQ (2010) GSK3 signalling in neural development. Nat Rev Neurosci 11:539-51 [Journal] [PubMed] Iitaka C, Miyazaki K, Akaike T, Ishida N (2005) A role for glycogen synthase kinase-3beta in the mammalian circadian clock. J Biol Chem 280:29397-402 [Journal] [PubMed] Izhikevich EM (2010) Dynamical systems in neuroscience: the geometry of excitability and bursting Jackson AC, Yao GL, Bean BP (2004) Mechanism of spontaneous firing in dorsomedial suprachiasmatic nucleus neurons. J Neurosci 24:7985-98 [Journal] [PubMed] Kim JK, Forger DB (2012) A mechanism for robust circadian timekeeping via stoichiometric balance. Mol Syst Biol 8:630 [Journal] [PubMed]
Kim JK, Forger DB, Marconi M, Wood D, Doran A, Wager T, Chang C, Walton KM (2013) Modeling and validating chronic pharmacological manipulation of circadian rhythms. CPT Pharmacometrics Syst Pharmacol 2:e57 [Journal] [PubMed] Kononenko NI, Honma S, Dudek FE, Honma K (2008) On the role of calcium and potassium currents in circadian modulation of firing rate in rat suprachiasmatic nucleus neurons: multielectrode dish analysis. Neurosci Res 62:51-7 [Journal] [PubMed] Kononenko NI, Shao LR, Dudek FE (2004) Riluzole-sensitive slowly inactivating sodium current in rat suprachiasmatic nucleus neurons. J Neurophysiol 91:710-8 [Journal] [PubMed] Kuhlman SJ, McMahon DG (2004) Rhythmic regulation of membrane potential and potassium current persists in SCN neurons in the absence of environmental input. Eur J Neurosci 20:1113-7 [Journal] [PubMed] Kuhlman SJ, McMahon DG (2006) Encoding the ins and outs of circadian pacemaking. J Biol Rhythms 21:470-81 [Journal] [PubMed] Lapidus KA, Soleimani L, Murrough JW (2013) Novel glutamatergic drugs for the treatment of mood disorders. Neuropsychiatr Dis Treat 9:1101-12 [Journal] [PubMed] LeSauter J, Yan L, Vishnubhotla B, Quintero JE, Kuhlman SJ, McMahon DG, Silver R (2003) A short half-life GFP mouse model for analysis of suprachiasmatic nucleus organization. Brain Res 964:279-87 [PubMed] Lewis AH, Raman IM (2014) Resurgent current of voltage-gated Na(+) channels. J Physiol 592:4825-38 [Journal] [PubMed] Li X, Jope RS (2010) Is glycogen synthase kinase-3 a central modulator in mood regulation? Neuropsychopharmacology 35:2143-54 [Journal] [PubMed] Lucas EK, Dougherty SE, McMeekin LJ, Reid CS, Dobrunz LE, West AB, Hablitz JJ, Cowell RM (2014) PGC-1a provides a transcriptional framework for synchronous neurotransmitter release from parvalbumin-positive interneurons. J Neurosci 34:14375-87 [Journal] [PubMed] McClung CA (2013) How might circadian rhythms control mood? Let me count the ways... Biol Psychiatry 74:242-9 [Journal] [PubMed] McManus EJ, Sakamoto K, Armit LJ, Ronaldson L, Shpiro N, Marquez R, Alessi DR (2005) Role that phosphorylation of GSK3 plays in insulin and Wnt signalling defined by knockin analysis. EMBO J 24:1571-83 [Journal] [PubMed] Meijer JH, Michel S (2015) Neurophysiological analysis of the suprachiasmatic nucleus: a challenge at multiple levels. Methods Enzymol 552:75-102 [Journal] [PubMed] Mertens J, Wang QW, Kim Y, Yu DX, Pham S, Yang B, Zheng Y, Diffenderfer KE, Zhang J, Soltani S, Eames T, Schafer ST, Boyer L, Marchetto MC, Nurnberger JI, Calabrese JR, Ødegaard KJ, McCarthy MJ, Zandi PP, Alda M, Alba M, Nievergelt CM, Pharmacogenomics of Bipolar Disorder Study , Mi S, Brennand KJ, Kelsoe JR, Gage FH, Yao J (2015) Differential responses to lithium in hyperexcitable neurons from patients with bipolar disorder. Nature 527:95-9 [Journal] [PubMed] Montgomery JR, Meredith AL (2012) Genetic activation of BK currents in vivo generates bidirectional effects on neuronal excitability. Proc Natl Acad Sci U S A 109:18997-9002 [Journal] [PubMed] Nakamura TJ, Nakamura W, Yamazaki S, Kudo T, Cutler T, Colwell CS, Block GD (2011) Age-related decline in circadian output. J Neurosci 31:10201-5 [Journal] [PubMed] Nunemaker CS, DeFazio RA, Moenter SM (2003) A targeted extracellular approach for recording long-term firing patterns of excitable cells: a practical guide. Biol Proced Online 5:53-62 [Journal] [PubMed] Osorio N, Cathala L, Meisler MH, Crest M, Magistretti J, Delmas P (2010) Persistent Nav1.6 current at axon initial segments tunes spike timing of cerebellar granule cells. J Physiol 588:651-70 [Journal] [PubMed] Panda S, Antoch MP, Miller BH, Su AI, Schook AB, Straume M, Schultz PG, Kay SA, Takahashi JS, Hogenesch JB (2002) Coordinated transcription of key pathways in the mouse by the circadian clock. Cell 109:307-20 [PubMed] Partch CL, Green CB, Takahashi JS (2014) Molecular architecture of the mammalian circadian clock. Trends Cell Biol 24:90-9 [Journal] [PubMed] Paul JR, Johnson RL, Jope RS, Gamble KL (2012) Disruption of circadian rhythmicity and suprachiasmatic action potential frequency in a mouse model with constitutive activation of glycogen synthase kinase 3. Neuroscience 226:1-9 [Journal] [PubMed] Pennartz CM, Bierlaagh MA, Geurtsen AM (1997) Cellular mechanisms underlying spontaneous firing in rat suprachiasmatic nucleus: involvement of a slowly inactivating component of sodium current. J Neurophysiol 78:1811-25 [Journal] [PubMed] Pennartz CM, de Jeu MT, Bos NP, Schaap J, Geurtsen AM (2002) Diurnal modulation of pacemaker potentials and calcium current in the mammalian circadian clock. Nature 416:286-90 [Journal] [PubMed] Raman IM, Gustafson AE, Padgett D (2000) Ionic currents and spontaneous firing in neurons isolated from the cerebellar nuclei. J Neurosci 20:9004-16 [PubMed] Sakhi K, Belle MD, Gossan N, Delagrange P, Piggins HD (2014) Daily variation in the electrophysiological activity of mouse medial habenula neurones. J Physiol 592:587-603 [Journal] [PubMed] Schaap J, Bos NP, de Jeu MT, Geurtsen AM, Meijer JH, Pennartz CM (1999) Neurons of the rat suprachiasmatic nucleus show a circadian rhythm in membrane properties that is lost during prolonged whole-cell recording. Brain Res 815:154-66 [PubMed] Shavkunov AS, Wildburger NC, Nenov MN, James TF, Buzhdygan TP, Panova-Elektronova NI, Green TA, Veselenak RL, Bourne N, Laezza F (2013) The fibroblast growth factor 14·voltage-gated sodium channel complex is a new target of glycogen synthase kinase 3 (GSK3). J Biol Chem 288:19370-85 [Journal] [PubMed] Sim CK, Forger DB (2007) Modeling the electrophysiology of suprachiasmatic nucleus neurons. J Biol Rhythms 22:445-53 [Journal] [PubMed] Taelman VF, Dobrowolski R, Plouhinec JL, Fuentealba LC, Vorwald PP, Gumper I, Sabatini DD, De Robertis EM (2010) Wnt signaling requires sequestration of glycogen synthase kinase 3 inside multivesicular endosomes. Cell 143:1136-48 [Journal] [PubMed] Tapia M, Del Puerto A, Puime A, Sánchez-Ponce D, Fronzaroli-Molinieres L, Pallas-Bazarra N, Carlier E, Giraud P, Debanne D, Wandosell F, Garrido JJ (2013) GSK3 and ß-catenin determines functional expression of sodium channels at the axon initial segment. Cell Mol Life Sci 70:105-20 [Journal] [PubMed] Wang TA, Yu YV, Govindaiah G, Ye X, Artinian L, Coleman TP, Sweedler JV, Cox CL, Gillette MU (2012) Circadian rhythm of redox state regulates excitability in suprachiasmatic nucleus neurons. Science 337:839-42 [Journal] [PubMed] Welsh DK, Takahashi JS, Kay SA (2010) Suprachiasmatic nucleus: cell autonomy and network properties. Annu Rev Physiol 72:551-77 [Journal] [PubMed] Yamada-Hanff J, Bean BP (2013) Persistent sodium current drives conditional pacemaking in CA1 pyramidal neurons under muscarinic stimulation. J Neurosci 33:15011-21 [Journal] [PubMed] Zhang C, Bosch MA, Qiu J, Rønnekleiv OK, Kelly MJ (2015) 17ß-Estradiol increases persistent Na(+) current and excitability of AVPV/PeN Kiss1 neurons in female mice. Mol Endocrinol 29:518-27 [Journal] [PubMed] |