| Literature DB >> 24629038 |
Inho Hwang, Eui-Ju Hong, Hyun Yang, Hong-Seok Kang, Changhwan Ahn, Beum-Soo An, Eui-Bae Jeung1.
Abstract
BACKGROUND: Calciotropic hormones were thought to facilitate calcium transfer through active transcellular or passive paracellular pathway for calcium homeostasis. While calcium transport proteins such as CaBP-28 k, TRPV5, NCX1, PMCA1b are involved in calcium reabsorption of the renal tubule using transcellular transport, tight junction proteins are known as critically related to calcium absorption through paracellular pathway. The regulation of each pathway for calcium transport was well studied but the correlation was not. It is expected that present study will provide new information about the link between transcellular and paracellular pathway within renal tubules.Entities:
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Year: 2014 PMID: 24629038 PMCID: PMC4003857 DOI: 10.1186/1471-2091-15-6
Source DB: PubMed Journal: BMC Biochem ISSN: 1471-2091 Impact factor: 4.059
List of primers used for PCR in this study
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Tight junction gene regulation in the kidney
| Normal | - | - | - | DKO↑ | - | - | - | - |
| Ca2+ deficient | - | DKO↑ | 9 k↑, DKO↑ | 28 k↑, DKO↑ | DKO↑ | 28 k↑ | 9 k↑, DKO↑ | - |
| Ca2+/Vit.D deficient | - | 28 k↑, DKO↑ | - | 28 k↑ DKO↑ | 28 k↑ DKO↑ | 28 k↑ | 28 k↑, DKO↑ | - |
↑: Significantly higher than WT mice, -: no difference, 9 k: CaBP-9 k KO mice, 28 k: CaBP-28 k KO mice, DKO: CaBP-9 k and -28 k double-KO mice.
Figure 1Tissue-specific expression of tight junction mRNA in the kidney of mice. CLDN4 (A) and CLDN16 (B) mRNA expression were analyzed by real-time PCR. The level of CLDN4, and CLDN16 mRNA of kidney in WT, CaBP-9 k KO, -28 k KO, and DKO animals was evaluated in normal or calcium deficiency diet or calcium/vitamin D-deficient. Every result was normalized relative to β-actin. The values represent means ± SD of three separate experiments. * indicates P < 0.05 vs WT of each diet.
Figure 2Regulation of tight junction protein expression in the kidney. The protein levels of CLDN4 and 16 were measured by Western blotting. The differential expression of CLDN4 and 16 in each type of normal conditioned mice were compared (A). The impact of calcium deficiency on CLDN4, and CLDN16 protein expression in WT, CaBP-9 k KO, -28 k KO, and DKO animal was evaluated (B). Differential CLDN4 and CLDN16 protein expression was examined in all strains of mice that were calcium/vitamin D-deficient (C). β-actin was used as the control. The values represent means ± SD of three separate experiments. * indicates P < 0.05 vs WT of each diet.
Figure 3Histologic alteration of tight junction proteins in the kidney. Immunohistochemistry was used to evaluate the differential localization of CLDN4 and 16 in the kidney. In normal conditioned mice, the renal localization of CLDN4 and 16 were compared (A). The effects of calcium deficiency on the differential localization of CLDN4 and CLDN16 were examined in the kidney of each strain of mice (B). The localization of CLDN4 and 16 was evaluated in the kidney of calcium- and vitamin D-deficient WT, CaBP-28 k KO, and DKO mice (C). Each slide was viewed at 400x magnification. Black arrows indicate immuno-positive signals.