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Summary Expression Phenotypes Gene Literature (73) GO Terms (6) Nucleotides (208) Proteins (89) Interactants (62) Wiki
XB-GENEPAGE-966485

Papers associated with kyat1



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Stoichiometry studies reveal functional properties of KDC1 in plant shaker potassium channels., Naso A, Montisci R, Gambale F, Picco C., Biophys J. November 15, 2006; 91 (10): 3673-83.


The potassium channel KAT1 is activated by plant and animal 14-3-3 proteins., Sottocornola B, Visconti S, Orsi S, Gazzarrini S, Giacometti S, Olivari C, Camoni L, Aducci P, Marra M, Abenavoli A, Thiel G, Moroni A., J Biol Chem. November 24, 2006; 281 (47): 35735-41.


HCN pacemaker channel activation is controlled by acidic lipids downstream of diacylglycerol kinase and phospholipase A2., Fogle KJ, Lyashchenko AK, Turbendian HK, Tibbs GR., J Neurosci. March 14, 2007; 27 (11): 2802-14.


The zinc binding site of the Shaker channel KDC1 from Daucus carota., Picco C, Naso A, Soliani P, Gambale F., Biophys J. January 15, 2008; 94 (2): 424-33.


14-3-3 proteins regulate the potassium channel KAT1 by dual modes., Sottocornola B, Gazzarrini S, Olivari C, Romani G, Valbuzzi P, Thiel G, Moroni A., Plant Biol (Stuttg). March 1, 2008; 10 (2): 231-6.


Voltage-induced morphological modifications in oocyte membranes containing exogenous K+ channels studied by electrochemical scanning force microscopy., Alessandrini A, Gavazzo P, Picco C, Facci P., Microsc Res Tech. April 1, 2008; 71 (4): 274-8.


Distinct roles of the last transmembrane domain in controlling Arabidopsis K+ channel activity., Gajdanowicz P, Garcia-Mata C, Gonzalez W, Morales-Navarro SE, Sharma T, González-Nilo FD, Gutowicz J, Mueller-Roeber B, Blatt MR, Dreyer I., New Phytol. January 1, 2009; 182 (2): 380-391.


The role of the C-terminus for functional heteromerization of the plant channel KDC1., Naso A, Dreyer I, Pedemonte L, Testa I, Gomez-Porras JL, Usai C, Mueller-Rueber B, Diaspro A, Gambale F, Picco C., Biophys J. May 20, 2009; 96 (10): 4063-74.


Ion selectivity of the Kat1 K+ channel pore., Nakamura RL, Gaber RF., Mol Membr Biol. August 1, 2009; 26 (5): 293-308.


Threonine at position 306 of the KAT1 potassium channel is essential for channel activity and is a target site for ABA-activated SnRK2/OST1/SnRK2.6 protein kinase., Sato A, Sato Y, Fukao Y, Fujiwara M, Umezawa T, Shinozaki K, Hibi T, Taniguchi M, Miyake H, Goto DB, Uozumi N., Biochem J. December 10, 2009; 424 (3): 439-48.


Preferential KAT1-KAT2 heteromerization determines inward K+ current properties in Arabidopsis guard cells., Lebaudy A, Pascaud F, Véry AA, Alcon C, Dreyer I, Thibaud JB, Lacombe B., J Biol Chem. February 26, 2010; 285 (9): 6265-74.


Closing plant stomata requires a homolog of an aluminum-activated malate transporter., Sasaki T, Mori IC, Furuichi T, Munemasa S, Toyooka K, Matsuoka K, Murata Y, Yamamoto Y., Plant Cell Physiol. March 1, 2010; 51 (3): 354-65.            


Modulation of the Arabidopsis KAT1 channel by an activator of protein kinase C in Xenopus laevis oocytes., Sato A, Gambale F, Dreyer I, Uozumi N., FEBS J. May 1, 2010; 277 (10): 2318-28.


Rare copy number variations in congenital heart disease patients identify unique genes in left-right patterning., Fakhro KA, Choi M, Ware SM, Belmont JW, Towbin JA, Lifton RP, Khokha MK, Brueckner M., Proc Natl Acad Sci U S A. February 15, 2011; 108 (7): 2915-20.                      


AtKC1 is a general modulator of Arabidopsis inward Shaker channel activity., Jeanguenin L, Alcon C, Duby G, Boeglin M, Chérel I, Gaillard I, Zimmermann S, Sentenac H, Véry AA., Plant J. August 1, 2011; 67 (4): 570-82.


Inhibitory effects of methylglyoxal on light-induced stomatal opening and inward K+ channel activity in Arabidopsis., Hoque TS, Okuma E, Uraji M, Furuichi T, Sasaki T, Hoque MA, Nakamura Y, Murata Y., Biosci Biotechnol Biochem. January 1, 2012; 76 (3): 617-9.


CPK13, a noncanonical Ca2+-dependent protein kinase, specifically inhibits KAT2 and KAT1 shaker K+ channels and reduces stomatal opening., Ronzier E, Corratgé-Faillie C, Sanchez F, Prado K, Brière C, Leonhardt N, Thibaud JB, Xiong TC., Plant Physiol. September 1, 2014; 166 (1): 314-26.


Inhibition by acrolein of light-induced stomatal opening through inhibition of inward-rectifying potassium channels in Arabidopsis thaliana., Islam MM, Ye W, Matsushima D, Khokon MA, Munemasa S, Nakamura Y, Murata Y., Biosci Biotechnol Biochem. January 1, 2015; 79 (1): 59-62.


A chloroplast retrograde signal, 3'-phosphoadenosine 5'-phosphate, acts as a secondary messenger in abscisic acid signaling in stomatal closure and germination., Pornsiriwong W, Estavillo GM, Chan KX, Tee EE, Ganguly D, Crisp PA, Phua SY, Zhao C, Qiu J, Park J, Yong MT, Nisar N, Yadav AK, Schwessinger B, Rathjen J, Cazzonelli CI, Wilson PB, Gilliham M, Chen ZH, Pogson BJ., Elife. March 21, 2017; 6                         


The K+ channel KZM2 is involved in stomatal movement by modulating inward K+ currents in maize guard cells., Gao YQ, Wu WH, Wang Y., Plant J. November 1, 2017; 92 (4): 662-675.


Identification of regions responsible for the function of the plant K+ channels KAT1 and AKT2 in Saccharomyces cerevisiae and Xenopus laevis oocytes., Saito S, Hoshi N, Zulkifli L, Widyastuti S, Goshima S, Dreyer I, Uozumi N., Channels (Austin). November 2, 2017; 11 (6): 510-516.


Identification of Shaker K+ channel family members in Rosaceae and a functional exploration of PbrKAT1., Chen G, Chen Q, Qi K, Xie Z, Yin H, Wang P, Wang R, Huang Z, Zhang S, Wang L, Wu J., Planta. December 1, 2019; 250 (6): 1911-1925.


External Cd2+ and protons activate the hyperpolarization-gated K+ channel KAT1 at the voltage sensor., Zhou Y, Assmann SM, Jegla T., J Gen Physiol. January 4, 2021; 153 (1):                           

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