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Updated: Aug 11, 2026

Analysis of Nephron Composition and Function in the Adult Zebrafish Kidney
Published on: August 9, 2014
Cellular localization and regulation of CHIF in kidney and colon
C Capurro1, N Coutry, J P Bonvalet
1Institut National de la Santé et de la Recherche Médicale U. 246, Paris, France.
Abstract:
Channel inducing factor (CHIF) is a novel cDNA recently cloned from a rat distal colon cDNA library of dexamethasone-treated animals. While its expression in Xenopus oocytes evokes a potassium channel activity similar to that induced by Isk (minK), its cellular role is not clear. CHIF exhibits significant homologies with proteins that are putatively regulatory (phospholemman, gamma-subunit of Na(+)-K(+)-ATPase, Mat-8) while it differs from the small-conductance potassium channel Isk. We have studied the tissue specificity of CHIF expression in rat by in situ hybridization. CHIF is selectively present in the distal parts of the nephron (medullary and papillary collecting ducts and end portions of cortical collecting tubule) and in the epithelial cells of the distal colon. No expression of CHIF was found in renal proximal tubule, loop of Henle and distal tubule, proximal colon, small intestine, lung, choroid plexus, salivary glands, or brain. To gain some insight into CHIF function, we have investigated, using in situ hybridization and ribonuclease protection assay, whether CHIF mRNA expression could be altered in some situations. In the distal colon, corticosteroid hormones, sodium restriction, low-potassium diet, and metabolic acidosis significantly increased CHIF mRNA expression. In the kidney, metabolic acidosis was the only condition that showed an increase in CHIF mRNA expression. Some of these treatments also altered the expression of the colonic H(+)-K(+)-ATPase mRNA. In summary, CHIF mRNA is selectively expressed in the medullary collecting duct of the kidney and in the epithelium of the distal colon; its expression varies differently in these two target tissues after alterations in corticosteroid status, potassium depletion, and metabolic acidosis. The precise cell-specific functions of CHIF remain to be established.
Insights
Channel inducing factor (CHIF) is selectively expressed in the kidney and colon. Its expression changes with corticosteroid levels, potassium, and acid-base balance, suggesting a regulatory role.
Area of Science:
- Physiology
- Molecular Biology
- Renal and Gastrointestinal Science
Background:
- Channel inducing factor (CHIF) is a novel cDNA with homology to regulatory proteins.
- CHIF evokes potassium channel activity but its cellular role is unclear.
- CHIF differs from the small-conductance potassium channel Isk.
Purpose of the Study:
- To determine the tissue specificity of CHIF expression in rats.
- To investigate how CHIF mRNA expression is altered by physiological conditions.
Main Methods:
- In situ hybridization was used to study CHIF tissue distribution.
- Ribonuclease protection assay and in situ hybridization were used to analyze CHIF mRNA expression changes.
Main Results:
- CHIF mRNA is selectively expressed in the rat medullary and papillary collecting ducts and distal colon epithelium.
- CHIF expression increased in the distal colon with corticosteroid hormones, sodium restriction, low-potassium diet, and metabolic acidosis.
- Metabolic acidosis increased CHIF mRNA in the kidney; some conditions altered colonic H(+)-K(+)-ATPase mRNA.
Conclusions:
- CHIF mRNA is selectively localized to the kidney's medullary collecting duct and the distal colon epithelium.
- CHIF expression in these tissues responds differently to hormonal and dietary changes.
- The precise cell-specific functions of CHIF require further investigation.
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