» Articles » PMID: 9458832

Distribution of Epithelial Ankyrin (Ank3) Spliceoforms in Renal Proximal and Distal Tubules

Overview
Journal Am J Physiol
Specialty Physiology
Date 1998 Feb 12
PMID 9458832
Citations 21
Authors
Affiliations
Soon will be listed here.
Abstract

In diverse cell types, ankyrin tethers a variety of ion transport and cell adhesion molecules to the spectrin-based membrane skeleton. In the whole kidney, epithelial ankyrin (Ank3) is the predominantly expressed ankyrin and is expressed as distinct spliceoforms. Antibodies against a portion of the Ank3 regulatory domain detected four major spliceoforms at 215, 200, 170, and 120 kDa. Immunoblotting of the renal cortex, which is 80% proximal tubule (PT), detected all four spliceoforms but showed significantly diminished Ank3(200/215). To determine the Ank3 spliceoforms present in the mouse PT cells, PT fragments were purified to 100% from the renal cortex. Isolation was performed by incubating cortical tubule segments with fluorescein and isolating the fluorescein-laden PT fragments or fluorescein-deplete non-PT (distal) fragments under fluorescence microscopy. Distal tubule (DT) fragments displayed abundance of the Ank3(200/215) but no Ank3(170) or Ank3(120). Isolated PT segments contained all four spliceoforms but dramatically diminished Ank3(200/215). These larger spliceoforms bind Na-K-ATPase in diverse cell types. Densitometric analysis of Ank3(200/215) and Na-K-ATPase abundance measured a lower Ank3(200/215)-to-Na-K-ATPase ratio in the PT vs. the renal cortex. These proximal vs. distal differences in Ank3 spliceoforms were displayed in LLC-PK1 cells, a proximal cell line, and MDCK cells, a distal cell line. The lower PT content of Ank3(200/215) suggests Na-K-ATPase in PT may be organized differently than in DT. Likely reflecting their cell-specific organization, regulation, and function, these studies indicate the different renal cell types express distinct Ank3 spliceoforms.

Citing Articles

Sex Modulates Response to Renal-Tubule-Targeted Insulin Receptor Deletion in Mice.

Sohail S, Akkawi G, Rechter T, Fluitt M, Ecelbarger C Int J Mol Sci. 2023; 24(9).

PMID: 37175762 PMC: 10178497. DOI: 10.3390/ijms24098056.


Acid Loading Unmasks Glucose Homeostatic Instability in Proximal-Tubule-Targeted Insulin/Insulin-Like-Growth-Factor-1 Receptor Dual Knockout Mice.

Aljaylani A, Fluitt M, Piselli A, Shepard B, Tiwari S, Ecelbarger C Cell Physiol Biochem. 2020; 54(4):682-695.

PMID: 32678535 PMC: 7414422. DOI: 10.33594/000000248.


Phosphorylated claudin-16 interacts with Trpv5 and regulates transcellular calcium transport in the kidney.

Hou J, Renigunta V, Nie M, Sunq A, Himmerkus N, Quintanova C Proc Natl Acad Sci U S A. 2019; 116(38):19176-19186.

PMID: 31488724 PMC: 6754598. DOI: 10.1073/pnas.1902042116.


Potentiating Tissue-Resident Type 2 Innate Lymphoid Cells by IL-33 to Prevent Renal Ischemia-Reperfusion Injury.

Cao Q, Wang Y, Niu Z, Wang C, Wang R, Zhang Z J Am Soc Nephrol. 2018; 29(3):961-976.

PMID: 29295873 PMC: 5827602. DOI: 10.1681/ASN.2017070774.


Ankyrin G Expression Regulates Apical Delivery of the Epithelial Sodium Channel (ENaC).

Klemens C, Edinger R, Kightlinger L, Liu X, Butterworth M J Biol Chem. 2016; 292(1):375-385.

PMID: 27895120 PMC: 5217695. DOI: 10.1074/jbc.M116.753616.