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Distinct Roles of the Last Transmembrane Domain in Controll..:
Gajdanowicz, Pawel
;
Garcia-Mata, Carlos
;
Gonzalez, Wendy
...
The New Phytologist. 182 (2009) 2 - p. 380-391 , 2009
Link:
https://www.jstor.org/stable/30225847
RT Journal T1
Distinct Roles of the Last Transmembrane Domain in Controlling Arabidopsis K⁺ Channel Activity
UL https://suche.suub.uni-bremen.de/peid=jstor-30225847&Exemplar=1&LAN=DE A1 Gajdanowicz, Pawel A1 Garcia-Mata, Carlos A1 Gonzalez, Wendy A1 Morales-Navarro, Samuel Elías A1 Sharma, Tripti A1 González-Nilo, Fernando Danilo A1 Gutowicz, Jan A1 Mueller-Roeber, Bernd A1 Blatt, Michael R. A1 Dreyer, Ingo PB Blackwell Publishing YR 2009 SN 0028-646X SN 1469-8137 K1 Arabidopsis K1 channel protein structure K1 channel protein-cation interaction K1 gating K1 inward rectifier K1 K⁺ channel K1 K⁺-dependent K1 outward rectifier K1 Physical sciences K1 Physics K1 Fundamental forces K1 Electromagnetism K1 Electricity K1 Electric potential K1 Electric current K1 Steady state current K1 Biological sciences K1 Biochemistry K1 Biomolecules K1 Macromolecules K1 Carbohydrates K1 Glycoconjugates K1 Glycoproteins K1 Membrane glycoproteins K1 Ion channels K1 Potassium channels K1 Biology K1 Cytology K1 Cell biology K1 Cells K1 Stem cells K1 Gametocytes K1 Oocytes K1 Chemistry K1 Chemical reactions K1 Reaction kinetics K1 Activation energy K1 Behavioral sciences K1 Anthropology K1 Applied anthropology K1 Cultural anthropology K1 Folkloristics K1 Folklore K1 Mythological creatures K1 Monsters K1 Chimeras K1 Chemical elements K1 Alkali metals K1 Potassium K1 Microphysics K1 Atomic physics K1 Atoms K1 Ions K1 Plant cells JF The New Phytologist VO 182 IS 2 SP 380 OP 391 LK http://dx.doi.org/https://www.jstor.org/stable/30225847 DO https://www.jstor.org/stable/30225847 SF ELIB - SuUB Bremen
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