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Intestinal calcium transporter (TRPV6, PMCA1b, calbindin) and intestinal phosphate transporter (SLC34A2, NaPi-IIb)

Molecular classification
Transporter, Ion channel (TRPV6), ATPase (PMCA1b), Calcium-binding protein (calbindin), Sodium-phosphate cotransporter (SLC34A2)
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Overview

Intestinal calcium and phosphate transporters are a group of membrane proteins and channels expressed by enterocytes responsible for the absorption of dietary calcium and phosphate across the intestinal epithelium. The main transporters for calcium include TRPV6 (an apical calcium channel), calbindin (an intracellular calcium-binding protein), and PMCA1b (a basolateral calcium ATPase). For phosphate, the principal transporter is the sodium-dependent phosphate transporter NaPi-IIb (SLC34A2). These systems are tightly regulated by hormones such as calcitriol (active vitamin D), parathyroid hormone, and fibroblast growth factor 23 to maintain systemic calcium and phosphate homeostasis critical for bone health and metabolic function. Disruption of transporter function leads to significant mineral balance disorders and is of therapeutic interest in metabolic bone and renal diseases.

Other names
Calcium channel, epithelial (TRPV6)Plasma membrane calcium ATPase 1b (PMCA1b)Calbindin-D9k (calcium-binding protein)Sodium-dependent phosphate transporter (NaPi-IIb, SLC34A2)Sodium-phosphate cotransporter familyIntestinal phosphate transporter
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Mechanism of action

Stimulating or inhibiting transporter expression via hormone modulation (e.g., upregulation by calcitriol) Altering paracellular permeability via tight junction proteins under hormonal control

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Biological functions

Intestinal absorption of calciumIntestinal absorption of phosphateSystemic mineral homeostasisBone mineralization
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Disease associations

OsteoporosisRicketsHypophosphatemiaChronic kidney diseaseCalcium and phosphate metabolic disorders
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Safety considerations

Dysregulation can result in hypercalcemia, hypocalcemia, hyperphosphatemia, or hypophosphatemiaAbnormal transporter function may contribute to kidney stones, bone demineralization, or vascular calcification
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Interacting drugs

None directly approved targeting these specific intestinal transporters, but vitamin D analogs (like calcitriol) regulate their expression and activity
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Biomarkers

Serum calcium (for calcium absorption function)Serum phosphate (for phosphate absorption function)Urinary calcium and phosphateExpression levels of TRPV6, calbindin, SLC34A2 (experimental)

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