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KCNJ11 gene expression is associated to feed consumption and growth traits in Nelore beef cattle
(2018-09-01)
Feed efficiency is a complex trait influenced by several genes and biological processes. However, there is limited knowledge about the genes and pathways involved in this trait. KCNJ11, related to the insulin secretion ...
Maxi-K channels contribute to urinary potassium excretion in the ROMK-deficient mouse model of Type II Bartter's syndrome and in adaptation to a high-K diet
(2006-07-12)
Type II Bartter's syndrome is a hereditary hypokalemic renal salt-wasting disorder caused by mutations in the ROMK channel (Kir1.1; Kcnj1), mediating potassium recycling in the thick ascending limb of Henle's loop (TAL) ...
Maxi-K channels contribute to urinary potassium excretion in the ROMK-deficient mouse model of Type II Bartter's syndrome and in adaptation to a high-K diet
(2006-07-12)
Type II Bartter's syndrome is a hereditary hypokalemic renal salt-wasting disorder caused by mutations in the ROMK channel (Kir1.1; Kcnj1), mediating potassium recycling in the thick ascending limb of Henle's loop (TAL) ...
Investigação funcional do canal para potássio KIR2.6: novas perspectivas para o Gating do canal
(Universidade Federal de São Paulo (UNIFESP), 2021)
The lipidic nature of the plasma membrane constitutes a barrier to the passage of electrically charged particles solvated in water. Ion channels are integral membrane proteins connecting the internal and external media of ...
Tissue Distribution of Kir7.1 Inwardly Rectifying K+ Channel Probed in a Knock-in Mouse Expressing a Haemagglutinin-Tagged Protein
(2018)
Kir7.1 encoded by the Kcnj13 gene in the mouse is an inwardly rectifying K+ channel present in epithelia where it shares membrane localization with the Na+/K+-pump. Further investigations of the localisation and function ...
Location and function of Kir7.1 in transporter epithelials
(2020)
Kir7.1 is an inwardly rectifying potassium-channel encoded by the Kcnj13 gene. It is present in epithelial tissues where it colocalizes with the Na+/K+-ATPase possibly playing a role in recycling K+ and to maintain the ...