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HANS H. USSING DISTINGUISHED LECTURESHIP OF THE EPITHELIAL TRANSPORT GROUP, 2013

期刊

AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY
卷 310, 期 4, 页码 C243-C259

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpcell.00328.2015

关键词

kidney; mechanoregulation; potassium transport; WNK kinases; cilia

资金

  1. National Institutes of Health grants from the National Institute of Diabetes and Digestive and Kidney Diseases [R01 DK038470, R01 DK084184, R37 DK051391, P30 DK079307]
  2. postdoctoral scholarship from CONACYT (Mexico)

向作者/读者索取更多资源

Flow-induced K secretion (FIKS) in the aldosterone-sensitive distal nephron (ASDN) is mediated by large-conductance, Ca2+ / stretch-activated BK channels composed of pore-forming alpha-subunits (BK alpha) and accessory beta-subunits. This channel also plays a critical role in the renal adaptation to dietary K loading. Within the ASDN, the cortical collecting duct (CCD) is a major site for the final renal regulation of K homeostasis. Principal cells in the ASDN possess a single apical cilium whereas the surfaces of adjacent intercalated cells, devoid of cilia, are decorated with abundant microvilli and microplicae. Increases in tubular (urinary) flow rate, induced by volume expansion, diuretics, or a high K diet, subject CCD cells to hydrodynamic forces (fluid shear stress, circumferential stretch, and drag/torque on apical cilia and presumably microvilli/microplicae) that are transduced into increases in principal (PC) and intercalated (IC) cell cytoplasmic Ca2+ concentration that activate apical voltage-, stretch-and Ca2+ -activated BK channels, which mediate FIKS. This review summarizes studies by ourselves and others that have led to the evolving picture that the BK channel is localized in a macromolecular complex at the apical membrane, composed of mechanosensitive apical Ca2+ channels and a variety of kinases/phosphatases as well as other signaling molecules anchored to the cytoskeleton, and that an increase in tubular fluid flow rate leads to IC-and PC-specific responses determined, in large part, by the cell-specific composition of the BK channels.

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