Developmental expression of ROMK in rat kidney.
نویسندگان
چکیده
The apical secretory K+(SK) channel in the principal cell represents the rate-limiting step for K+ secretion across the cortical collecting duct (CCD). Patch clamp analysis of maturing rabbit principal cells identifies an increase in number of conducting SK channels after the 2nd week of life [L. M. Satlin and L. G. Palmer. Am. J. Physiol. 272 ( Renal Physiol. 41): F397-F404, 1997], ∼1 wk after an increase in activity of the amiloride-sensitive epithelial Na+channel (ENaC) is detected. To correlate the postnatal increase in channel activity with developmental expression of ROMK, the molecular correlate of the SK channel, we used gene-specific probes to show a developmental increase in abundance of renal ROMK mRNA and a ROMK-specific antibody to examine the nephron distribution, localization, and abundance of this protein in developing rat kidney. Using antibodies directed against aquaporin-3 (AQP-3) and Tamm-Horsfall protein (THP), we confirmed that ROMK was expressed along the apical membranes of principal cells and thick ascending limbs of Henle (TALH) in adult kidney. Within the midcortex of the neonatal kidney, ROMK-positive segments revealed weak coincident staining with the TALH-specific antibody but did not colabel with an antibody directed against distal and connecting tubule (CNT)-specific kallikrein or the lectin Dolichos biflorus agglutinin (DBA), which labels proximal tubules and collecting ducts. In inner cortex and outer medulla of kidneys from 1-wk-old animals, ROMK protein was identified in medullary TALH (MTALH) and DBA-positive collecting ducts. By 3 wk of age, coincident ROMK and DBA expression was detected in midcortical and outer cortical CNTs and CCDs. Immunoblot analysis of plasma membrane-enriched fractions of maturing rat kidney revealed a developmental increase in a ∼40-kDa band, the expected size for ROMK. Immunolocalization of α-ENaC showed apical staining of a majority of cells in distal nephron segments after the 1st week of postnatal life. The β- and γ-ENaC subunit expression was routinely detected in a mostly cytoplasmic distribution immediately after birth, albeit in low abundance; γ-ENaC showed some apical polarization. These results suggest that the postnatal increases in a principal cell apical SK and Na+channel activity are mediated, at least in part, by increases in abundance of ROMK message and protein and ENaC subunit proteins.
منابع مشابه
AFLUID June 45/6
Zolotnitskaya, Anna, and Lisa M. Satlin. Developmental expression of ROMK in rat kidney. Am. J. Physiol. 276 (Renal Physiol. 45): F825–F836, 1999.—The apical secretory K1 (SK) channel in the principal cell represents the ratelimiting step for K1 secretion across the cortical collecting duct (CCD). Patch clamp analysis of maturing rabbit principal cells identifies an increase in number of conduc...
متن کاملAFLUID June 47/6
Mennitt, Patricia A., Gustavo Frindt, Randi B. Silver, and Lawrence G. Palmer. Potassium restriction downregulates ROMK expression in rat kidney. Am J Physiol Renal Physiol 278: F916–F924, 2000.—The ROMK family of proteins has biophysical properties and distribution within the kidney similar to those of secretory potassium channels of the distal nephron. To study the regulation of ROMK during v...
متن کاملPotassium restriction downregulates ROMK expression in rat kidney.
The ROMK family of proteins has biophysical properties and distribution within the kidney similar to those of secretory potassium channels of the distal nephron. To study the regulation of ROMK during variations in dietary potassium, we measured the abundance of ROMK protein in rat kidney by immunoblotting. Neither 2 nor 5 days of a high-potassium diet had an effect on protein abundance in the ...
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متن کاملDifferential regulation of ROMK expression in kidney cortex and medulla by aldosterone and potassium.
This study explores the role of K+ and aldosterone in the regulation of mRNA of the ATP-sensitive, inwardly rectifying K+ channel, ROMK, in the rat kidney. K+ deficiency downregulated ROMK mRNA in cortex to 47.1 ± 5.1% of control ( P < 0.001) and in medulla to 56.1 ± 3.4% ( P < 0.001). High-K+ diet slightly increased ROMK mRNA in medulla to 122 ± 9% ( P < 0.05 vs. control). Adrenalectomy (Adx) ...
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عنوان ژورنال:
- The American journal of physiology
دوره 276 6 Pt 2 شماره
صفحات -
تاریخ انتشار 1999