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Summary Expression Phenotypes Gene Literature (208) GO Terms (6) Nucleotides (253) Proteins (94) Interactants (494) Wiki
XB-GENEPAGE-986947

Papers associated with mapt



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6 paper(s) referencing morpholinos

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referenced by:


Distinctive mechanisms of epilepsy-causing mutants discovered by measuring S4 movement in KCNQ2 channels., Edmond MA, Hinojo-Perez A, Wu X, Perez Rodriguez ME, Barro-Soria R., Elife. June 1, 2022; 11                           


Proteomic screen reveals diverse protein transport between connected neurons in the visual system., Schiapparelli LM, Sharma P, He HY, Li J, Shah SH, McClatchy DB, Ma Y, Liu HH, Goldberg JL, Yates JR, Cline HT., Cell Rep. January 25, 2022; 38 (4): 110287.


A convergent molecular network underlying autism and congenital heart disease., Rosenthal SB, Willsey HR, Xu Y, Xu Y, Mei Y, Dea J, Wang S, Curtis C, Sempou E, Khokha MK, Chi NC, Willsey AJ, Fisch KM, Ideker T., Cell Syst. November 17, 2021; 12 (11): 1094-1107.e6.            


Tracking the movement of discrete gating charges in a voltage-gated potassium channel., Priest MF, Lee EE, Bezanilla F., Elife. November 15, 2021; 10                     


Inhibition of interleukin-1β plays a protective role in Alzheimer''s disease by promoting microRNA-9-5p and downregulating targeting protein for xenopus kinesin-like protein 2., Zhang YY, Dong LX, Bao HL, Liu Y, An FM, Zhang GW., Int Immunopharmacol. August 1, 2021; 97 107578.


Tau, XMAP215/Msps and Eb1 co-operate interdependently to regulate microtubule polymerisation and bundle formation in axons., Hahn I, Voelzmann A, Parkin J, Fülle JB, Slater PG, Lowery LA, Sanchez-Soriano N, Prokop A., PLoS Genet. July 6, 2021; 17 (7): e1009647.              


Co-movement of astral microtubules, organelles and F-actin by dynein and actomyosin forces in frog egg cytoplasm., Pelletier JF, Field CM, Fürthauer S, Sonnett M, Mitchison TJ., Elife. December 7, 2020; 9                         


In silico re-engineering of a neurotransmitter to activate KCNQ potassium channels in an isoform-specific manner., Manville RW, Abbott GW., Commun Biol. February 22, 2019; 2 401.                    


Differential modulation of human GABAC-ρ1 receptor by sulfur-containing compounds structurally related to taurine., Ochoa-de la Paz LD, González-Andrade M, Pasantes-Morales H, Franco R, Zamora-Alvarado R, Zenteno E, Quiroz-Mercado H, Gonzales-Salinas R, Gulias-Cañizo R., BMC Neurosci. August 3, 2018; 19 (1): 47.            


Retraction of rod-like mitochondria during microtubule-dependent transport., De Rossi MC, Levi V, Bruno L., Biosci Rep. June 29, 2018; 38 (3):         


Negative allosteric modulation of alpha 5-containing GABAA receptors engenders antidepressant-like effects and selectively prevents age-associated hyperactivity in tau-depositing mice., Xu NZ, Ernst M, Treven M, Cerne R, Wakulchik M, Li X, Jones TM, Gleason SD, Morrow D, Schkeryantz JM, Rahman MT, Li G, Poe MM, Cook JM, Witkin JM., Psychopharmacology (Berl). April 1, 2018; 235 (4): 1151-1161.


Large, long range tensile forces drive convergence during Xenopus blastopore closure and body axis elongation., Shook DR, Kasprowicz EM, Davidson LA, Davidson LA, Keller R., Elife. March 13, 2018; 7                           


An Intracellular Ammonium Transporter Is Necessary for Replication, Differentiation, and Resistance to Starvation and Osmotic Stress in Trypanosoma cruzi., Cruz-Bustos T, Potapenko E, Storey M, Docampo R., mSphere. January 17, 2018; 3 (1):                   


Molecular basis of selective resistance of the bumblebee BiNav1 sodium channel to tau-fluvalinate., Wu S, Nomura Y, Du Y, Zhorov BS, Dong K., Proc Natl Acad Sci U S A. December 5, 2017; 114 (49): 12922-12927.


Tau-based fluorescent protein fusions to visualize microtubules., Mooney P, Sulerud T, Pelletier JF, Dilsaver MR, Tomschik M, Geisler C, Gatlin JC., Cytoskeleton (Hoboken). June 1, 2017; 74 (6): 221-232.


Mechanism of functional interaction between potassium channel Kv1.3 and sodium channel NavBeta1 subunit., Kubota T, Correa AM, Bezanilla F., Sci Rep. March 28, 2017; 7 45310.            


Functional assessment of the NMDA receptor variant GluN2A R586K., Marwick KFM, Parker P, Skehel P, Hardingham G, Wyllie DJA., Wellcome Open Res. March 17, 2017; 2 20.      


Molecular Mechanism of Disease-Associated Mutations in the Pre-M1 Helix of NMDA Receptors and Potential Rescue Pharmacology., Ogden KK, Chen W, Swanger SA, McDaniel MJ, Fan LZ, Hu C, Tankovic A, Kusumoto H, Kosobucki GJ, Schulien AJ, Su Z, Pecha J, Bhattacharya S, Petrovski S, Cohen AE, Aizenman E, Traynelis SF, Yuan H., PLoS Genet. January 17, 2017; 13 (1): e1006536.                  


Malaria parasite CelTOS targets the inner leaflet of cell membranes for pore-dependent disruption., Jimah JR, Salinas ND, Sala-Rabanal M, Jones NG, Sibley LD, Nichols CG, Schlesinger PH, Tolia NH., Elife. December 1, 2016; 5                   


Investigation of LRRC8-Mediated Volume-Regulated Anion Currents in Xenopus Oocytes., Gaitán-Peñas H, Gradogna A, Laparra-Cuervo L, Solsona C, Fernández-Dueñas V, Barrallo-Gimeno A, Ciruela F, Lakadamyali M, Pusch M, Estévez R., Biophys J. October 4, 2016; 111 (7): 1429-1443.                


Selective inhibition of the kinase DYRK1A by targeting its folding process., Kii I, Sumida Y, Goto T, Sonamoto R, Okuno Y, Yoshida S, Kato-Sumida T, Koike Y, Abe M, Nonaka Y, Ikura T, Ito N, Shibuya H, Hosoya T, Hagiwara M., Nat Commun. April 22, 2016; 7 11391.                    


Stochasticity in the miR-9/Hes1 oscillatory network can account for clonal heterogeneity in the timing of differentiation., Phillips NE, Manning CS, Pettini T, Biga V, Marinopoulou E, Stanley P, Boyd J, Bagnall J, Paszek P, Spiller DG, White MR, Goodfellow M, Galla T, Rattray M, Papalopulu N., Elife. January 28, 2016; 5                                                           


A synergistic blocking effect of Mg²⁺ and spermine on the inward rectifier K⁺ (Kir2.1) channel pore., Huang CW, Kuo CC., Sci Rep. January 22, 2016; 6 21493.                      


Tau Tubulin Kinase TTBK2 Sensitivity of Glutamate Receptor GluK2., Nieding K, Matschke V, Meuth SG, Lang F, Seebohm G, Strutz-Seebohm N., Cell Physiol Biochem. January 1, 2016; 39 (4): 1444-52.


Molecular Cloning and Functional Expression of the Equine K+ Channel KV11.1 (Ether à Go-Go-Related/KCNH2 Gene) and the Regulatory Subunit KCNE2 from Equine Myocardium., Pedersen PJ, Thomsen KB, Olander ER, Hauser F, Tejada Mde L, Poulsen KL, Grubb S, Buhl R, Calloe K, Klaerke DA., PLoS One. September 4, 2015; 10 (9): e0138320.                  


The active Hsc70/tau complex can be exploited to enhance tau turnover without damaging microtubule dynamics., Fontaine SN, Martin MD, Akoury E, Assimon VA, Borysov S, Nordhues BA, Sabbagh JJ, Cockman M, Gestwicki JE, Zweckstetter M, Dickey CA., Hum Mol Genet. July 15, 2015; 24 (14): 3971-81.


Microtubule-associated protein tau promotes neuronal class II β-tubulin microtubule formation and axon elongation in embryonic Xenopus laevis., Liu Y, Wang C, Wang C, Destin G, Szaro BG., Eur J Neurosci. May 1, 2015; 41 (10): 1263-75.            


Paxilline inhibits BK channels by an almost exclusively closed-channel block mechanism., Zhou Y, Lingle CJ., J Gen Physiol. November 1, 2014; 144 (5): 415-40.                            


FAK is required for tension-dependent organization of collective cell movements in Xenopus mesendoderm., Bjerke MA, Dzamba BJ, Wang C, DeSimone DW., Dev Biol. October 15, 2014; 394 (2): 340-56.                        


Lateral motion and bending of microtubules studied with a new single-filament tracking routine in living cells., Pallavicini C, Levi V, Wetzler DE, Angiolini JF, Benseñor L, Despósito MA, Bruno L., Biophys J. June 17, 2014; 106 (12): 2625-35.


Domain-domain interactions determine the gating, permeation, pharmacology, and subunit modulation of the IKs ion channel., Zaydman MA, Kasimova MA, McFarland K, Beller Z, Hou P, Kinser HE, Liang H, Zhang G, Shi J, Tarek M, Cui J., Elife. March 12, 2014; 3 e03606.                        


Comparative expression analysis of cysteine-rich intestinal protein family members crip1, 2 and 3 during Xenopus laevis embryogenesis., Hempel A, Kühl SJ., Int J Dev Biol. January 1, 2014; 58 (10-12): 841-9.                                              


Cellular response to micropatterned growth promoting and inhibitory substrates., Belkaid W, Thostrup P, Yam PT, Juzwik CA, Ruthazer ES, Dhaunchak AS, Colman DR., BMC Biotechnol. October 11, 2013; 13 86.          


c-Jun N-terminal kinase phosphorylation of heterogeneous nuclear ribonucleoprotein K regulates vertebrate axon outgrowth via a posttranscriptional mechanism., Hutchins EJ, Szaro BG., J Neurosci. September 11, 2013; 33 (37): 14666-80.                


Conformational changes in the lower palm domain of ASIC1a contribute to desensitization and RFamide modulation., Frey EN, Pavlovicz RE, Wegman CJ, Li C, Askwith CC., PLoS One. August 12, 2013; 8 (8): e71733.            


Imbalance of Hsp70 family variants fosters tau accumulation., Jinwal UK, Akoury E, Abisambra JF, O'Leary JC, Thompson AD, Blair LJ, Jin Y, Bacon J, Nordhues BA, Cockman M, Zhang J, Li P, Zhang B, Borysov S, Uversky VN, Biernat J, Mandelkow E, Gestwicki JE, Zweckstetter M, Dickey CA., FASEB J. April 1, 2013; 27 (4): 1450-9.


Upregulation of Na+,Cl(-)-coupled betaine/γ-amino-butyric acid transporter BGT1 by Tau tubulin kinase 2., Almilaji A, Munoz C, Hosseinzadeh Z, Lang F., Cell Physiol Biochem. January 1, 2013; 32 (2): 334-43.


HIRA dependent H3.3 deposition is required for transcriptional reprogramming following nuclear transfer to Xenopus oocytes., Jullien J, Astrand C, Szenker E, Garrett N, Almouzni G, Gurdon JB., Epigenetics Chromatin. October 29, 2012; 5 (1): 17.      


Heterogeneous nuclear ribonucleoprotein K, an RNA-binding protein, is required for optic axon regeneration in Xenopus laevis., Liu Y, Yu H, Deaton SK, Szaro BG., J Neurosci. March 7, 2012; 32 (10): 3563-74.              


Frontotemporal dementia: implications for understanding Alzheimer disease., Goedert M, Ghetti B, Spillantini MG., Cold Spring Harb Perspect Med. February 1, 2012; 2 (2): a006254.


Upregulation of Na-coupled glucose transporter SGLT1 by Tau tubulin kinase 2., Alesutan I, Sopjani M, Dërmaku-Sopjani M, Munoz C, Voelkl J, Lang F., Cell Physiol Biochem. January 1, 2012; 30 (2): 458-65.


Asymmetric divergence in structure and function of HCN channel duplicates in Ciona intestinalis., Jackson HA, Hegle A, Nazzari H, Jegla T, Accili EA., PLoS One. January 1, 2012; 7 (11): e47590.                


State-independent intracellular access of quaternary ammonium blockers to the pore of TREK-1., Rapedius M, Schmidt MR, Sharma C, Stansfeld PJ, Sansom MS, Baukrowitz T, Tucker SJ., Channels (Austin). January 1, 2012; 6 (6): 473-8.      


hnRNP K post-transcriptionally co-regulates multiple cytoskeletal genes needed for axonogenesis., Liu Y, Szaro BG., Development. July 1, 2011; 138 (14): 3079-90.                


Alzheimer Aβ disrupts the mitotic spindle and directly inhibits mitotic microtubule motors., Borysov SI, Granic A, Padmanabhan J, Walczak CE, Potter H., Cell Cycle. May 1, 2011; 10 (9): 1397-410.


TRESK background K(+) channel is inhibited by PAR-1/MARK microtubule affinity-regulating kinases in Xenopus oocytes., Braun G, Nemcsics B, Enyedi P, Czirják G., PLoS One. January 1, 2011; 6 (12): e28119.            


Identification of the pre-T-cell receptor alpha chain in nonmammalian vertebrates challenges the structure-function of the molecule., Smelty P, Marchal C, Renard R, Sinzelle L, Pollet N, Dunon D, Jaffredo T, Sire JY, Fellah JS., Proc Natl Acad Sci U S A. November 16, 2010; 107 (46): 19991-6.        


Development of a novel selective inhibitor of the Down syndrome-related kinase Dyrk1A., Ogawa Y, Nonaka Y, Goto T, Ohnishi E, Hiramatsu T, Kii I, Yoshida M, Ikura T, Onogi H, Shibuya H, Hosoya T, Ito N, Hagiwara M., Nat Commun. October 5, 2010; 1 86.  


Macroscopic stiffening of embryonic tissues via microtubules, RhoGEF and the assembly of contractile bundles of actomyosin., Zhou J, Kim HY, Wang JH, Davidson LA., Development. August 1, 2010; 137 (16): 2785-94.        


MID1 and MID2 are required for Xenopus neural tube closure through the regulation of microtubule organization., Suzuki M, Hara Y, Takagi C, Yamamoto TS, Ueno N., Development. July 1, 2010; 137 (14): 2329-39.                                                      

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