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Differential Association of the Na+/H+ Exchanger Regulatory Factor (NHERF) Family of Adaptor Proteins with the Raft- and the Non-Raft Brush Border Membrane Fractions of NHE3

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Last modified
  • 03/14/2025
Type of Material
Authors
    Ayesha Sultan, Hannover Medical SchoolMin Luo, Hannover Medical SchoolQin Yu, Hannover Medical SchoolBrigitte Riederer, Hannover Medical SchoolWeiliang Xia, Hannover Medical SchoolMingmin Chen, Hannover Medical SchoolSimone Lissner, University of TübingenJohannes E. Gessner, Hannover Medical SchoolMark Donowitz, John Hopkins School of MedicineChris Yun, Emory UniversityHugo deJonge, Erasmus MCGeorg Lamprecht, University of RostockUrsula Seidler, Hannover Medical School
Language
  • English
Date
  • 2013-01-01
Publisher
  • Karger Publishers Open Access
Publication Version
Copyright Statement
  • © 2013 S. Karger AG, Basel.
License
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 1015-8987
Volume
  • 32
Issue
  • 5
Start Page
  • 1386
End Page
  • 1402
Grant/Funding Information
  • This work was supported by DFG grant SFB621-C9, by the Volkswagen Stiftung (both to U.S.) and by a stipend from the PhD program “Molecular Medicine” of the Hannover Biomedical Research School (to A.S.).
Abstract
  • Background/Aims: Trafficking, brush border membrane (BBM) retention, and signal-specific regulation of the Na + /H + exchanger NHE3 is regulated by the Na + /H + Exchanger Regulatory Factor (NHERF) family of PDZ-adaptor proteins, which enable the formation of multiprotein complexes. It is unclear, however, what determines signal specificity of these NHERFs. Thus, we studied the association of NHE3, NHERF1 (EBP50), NHERF2 (E3KARP), and NHERF3 (PDZK1) with lipid rafts in murine small intestinal BBM. Methods: Detergent resistant membranes ('lipid rafts') were isolated by floatation of Triton X-incubated small intestinal BBM from a variety of knockout mouse strains in an Optiprep step gradient. Acid-activated NHE3 activity was measured fluorometrically in BCECF-loaded microdissected villi, or by assessment of CO 2 /HCO 3 - mediated increase in fluid absorption in perfused jejunal loops of anethetized mice. Results: NHE3 was found to partially associate with lipid rafts in the native BBM, and NHE3 raft association had an impact on NHE3 transport activity and regulation in vivo. NHERF1, 2 and 3 were differentially distributed to rafts and non-rafts, with NHERF2 being most raft-associated and NHERF3 entirely non-raft associated. NHERF2 expression enhanced the localization of NHE3 to membrane rafts. The use of acid sphingomyelinase-deficient mice, which have altered membrane lipid as well as lipid raft composition, allowed us to test the validity of the lipid raft concept in vivo. Conclusions: The differential association of the NHERFs with the raft-associated and the non-raft fraction of NHE3 in the brush border membrane is one component of the differential and signal-specific NHE3 regulation by the different NHERFs.
Author Notes
  • Corresponding Author: Ursula Seidler Dept. of Gastroenterology, Hepatology and Endocrinology, Hannover Medical School, Carl-Neuberg-Straße 1, D-30625 (Germany) Tel. +49-511-532-9427, Fax +49-511-532-8428, E-mail Seidler.Ursula@mh-hannover.de
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Research Categories
  • Health Sciences, General

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