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Effective polarization in potassium channel simulations: Ion conductance, occupancy, voltage response, and selectivity. [PDF]
Hui C, de Vries R, Kopec W, de Groot BL.
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Pro-Reparative Effects of KvLQT1 Potassium Channel Activation in a Mouse Model of Acute Lung Injury Induced by Bleomycin. [PDF]
Voisin T +7 more
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Neuronal potassium channel activity triggers initiation of mRNA translation through binding of translation regulators. [PDF]
Malone TJ +8 more
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Ethanol alters mechanosensory habituation in C. elegans by way of the BK potassium channel through a novel mechanism. [PDF]
Kokan N +4 more
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The physiological characteristics of inward rectifying potassium channel Kir4.2 and its research progress in human diseases. [PDF]
Zhang H, Bai Z, Xi Y.
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Cell Calcium, 2022
Lysosomes are acidic membrane-bound organelles that use hydrolytic enzymes to break down material through pathways such as endocytosis, phagocytosis, mitophagy, and autophagy. To function properly, intralysosomal environments are strictly controlled by a set of integral membrane proteins such as ion channels and transporters.
Peng, Huang +4 more
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Lysosomes are acidic membrane-bound organelles that use hydrolytic enzymes to break down material through pathways such as endocytosis, phagocytosis, mitophagy, and autophagy. To function properly, intralysosomal environments are strictly controlled by a set of integral membrane proteins such as ion channels and transporters.
Peng, Huang +4 more
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IEEE Transactions on Nanobioscience, 2005
Potassium channels are integral membrane proteins that selectively transport K+ across the cell membrane. They are present in all mammalian cells and have a wide variety of roles in both excitable and nonexcitable cells. The phenotypic diversity required to accomplish their various roles is created by differences in conductance, the timecourse and ...
Stephen J, Korn, Josef G, Trapani
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Potassium channels are integral membrane proteins that selectively transport K+ across the cell membrane. They are present in all mammalian cells and have a wide variety of roles in both excitable and nonexcitable cells. The phenotypic diversity required to accomplish their various roles is created by differences in conductance, the timecourse and ...
Stephen J, Korn, Josef G, Trapani
openaire +2 more sources

