Related Experiment Video
Updated: Jul 13, 2026

Spectral Karyotyping to Study Chromosome Abnormalities in Humans and Mice with Polycystic Kidney Disease
Published on: February 3, 2012
Partial human genetic deficiency in tissue kallikrein activity and renal calcium handling
Anne Blanchard1, Michel Azizi, Séverine Peyrard
1Centre d'Investigation Cliniques, Hôpital Européen Georges Pompidou, 20-40 rue Leblanc, F-75015 Paris, France. anne.blanchard@egp.aphp.fr
Abstract:
A loss-of-function polymorphism of the human tissue kallikrein (TK) gene (R53H) induces a major decrease in enzyme activity. Inactivation of the TK gene in mice causes a defect in tubular calcium (Ca) reabsorption. Therefore, this study investigated the Ca phenotype of carriers of the 53H allele. In a crossover study, 30 R53R homozygous and 10 R53H heterozygous young white male individuals were randomly assigned to two 7-d low-Ca diets (10 mmol/d) associated with either a low-sodium (Na)/high-potassium (K) diet or a high-Na/low-K diet to modulate TK synthesis. On the seventh day of each diet, the participants were studied before and during a 2-h infusion of furosemide that functionally excludes the thick ascending limb and increases Ca delivery to distal tubular segments. Urinary kallikrein activity was 50 to 60% lower in R53H participants than in R53R participants. Adaptation of urinary Ca excretion to the contrasted Na/K diets was unaffected in R53H participants. By contrast, R53H participants after furosemide infusion had significantly lower serum ionized Ca concentrations than did R53R participants (P < 0.0001) and tendency toward nonsignificantly higher urinary Ca excretions than did R53R participants (P = 0.14). These effects were more marked under low-Na/high-K diet. Despite nonsignificant differences in urinary Ca excretions between the two groups, these results suggest in R53H individuals an increase in Ca reabsorption in the thick ascending limb under baseline conditions that counteracts a distal tubular defect that is revealed by furosemide infusion. In humans as in mice, TK thus may act as an intrarenal modulator of Ca reabsorption.
Insights
The human tissue kallikrein (TK) R53H polymorphism impairs enzyme activity, affecting calcium reabsorption. Carriers show altered calcium handling, particularly after furosemide, suggesting TK’s role in kidney calcium regulation.
Area of Science:
- Nephrology
- Genetics
- Biochemistry
Background:
- A loss-of-function polymorphism (R53H) in the human tissue kallikrein (TK) gene significantly reduces enzyme activity.
- TK gene inactivation in mice leads to defective tubular calcium (Ca) reabsorption, indicating a potential role in renal Ca handling.
Purpose of the Study:
- To investigate the calcium phenotype in individuals carrying the 53H allele of the TK gene.
- To explore the impact of dietary sodium and potassium on TK synthesis and Ca excretion in R53H carriers.
Main Methods:
- A crossover study involving 30 R53R and 10 R53H young white males on controlled low-Ca diets.
- Participants were assigned to either low-sodium/high-potassium or high-sodium/low-potassium diets for 7 days.
- Measurements included urinary kallikrein activity, serum ionized calcium, and urinary calcium excretion before and after furosemide infusion.
Main Results:
- Urinary kallikrein activity was 50-60% lower in R53H participants compared to R53R participants.
- R53H participants exhibited significantly lower serum ionized calcium concentrations post-furosemide infusion (P < 0.0001).
- A trend towards higher urinary calcium excretion was observed in R53H individuals post-furosemide, particularly on the low-Na/high-K diet.
Conclusions:
- The TK R53H polymorphism may lead to increased calcium reabsorption in the thick ascending limb under baseline conditions.
- A distal tubular defect in calcium handling, unmasked by furosemide, is suggested in R53H carriers.
- Tissue kallikrein (TK) likely functions as an intrarenal modulator of calcium reabsorption in both humans and mice.
More Related Videos
Related Concept Videos
Skeleton and Calcium Homeostasis
Inborn Errors of Metabolism
Cytoskeletal Linker Proteins - Plakins
Antihypertensive Drugs: Potassium-Sparing Diuretics
Chronic Kidney Disease III: Interprofessional Care
Chronic Kidney Disease II: Clinical Manifestations

