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Published on: April 13, 2015
TMEM174 Deficiency Reduces Longevity by Promoting Phosphate-Driven Vascular Calcification
Jose G Miranda1, Judith Blaine1, Makoto Miyazaki1
1Department of Medicine, Division of Renal Diseases and Hypertension, University of Colorado Anschutz Medical Campus, Aurora, CO USA.
Abstract:
Dysregulation of phosphate homeostasis contributes to reduced longevity and vascular complications in chronic kidney disease and aging. This study investigates the role of TMEM174, a proximal tubule-specific protein, in regulating the phosphate co-transporter NPT2A and its subsequent impact on lifespan and vascular health. TMEM174 knockout (KO) mice (C57BL6/J and DBA/2J) were fed diets with varying phosphate concentrations (0.6% vs. 1.2%). In OKP cells, TIRF and FRET microscopy, alongside immunoprecipitation, were used to identify the TMEM174 protein regions essential for NPT2A binding and endocytosis. TMEM174 KO mice exhibited significantly shorter lifespans than wild-type controls. High phosphate diets exacerbated vascular calcification, stiffness, and mortality, while low phosphate diets rescued these phenotypes. In vitro, TMEM174 siRNA blocked PTH-induced NPT2A endocytosis, increasing its apical membrane retention. FRET and biochemical assays revealed that the C-terminal region of TMEM174 is essential for its association with NPT2A. While intact TMEM174 and N-terminal mutants (TMEM174ΔN) facilitated NPT2A degradation, C-terminal deletions (TMEM174ΔC) failed to associate with or degrade NPT2A. TMEM174 is a critical regulator of phosphate homeostasis and longevity. The C-terminal region of TMEM174 is specifically required for NPT2A endocytosis and degradation, identifying it as a potential therapeutic target for managing phosphate-related vascular complications.
Insights
TMEM174 protein is vital for phosphate balance and longevity. Its C-terminal region regulates phosphate transporter NPT2A endocytosis and degradation, offering a therapeutic target for vascular complications.
Area of Science:
- Nephrology
- Molecular Biology
- Gerontology
Background:
- Phosphate homeostasis is crucial for preventing vascular issues and extending lifespan, particularly in chronic kidney disease and aging.
- TMEM174, a protein in the kidney's proximal tubules, influences phosphate transport and overall health.
Purpose of the Study:
- To investigate TMEM174's role in regulating the phosphate co-transporter NPT2A.
- To determine TMEM174's impact on lifespan and vascular health.
- To identify specific TMEM174 regions involved in NPT2A binding and endocytosis.
Main Methods:
- Utilized TMEM174 knockout mice fed varying phosphate diets.
- Employed TIRF and FRET microscopy, and immunoprecipitation in OKP cells.
- Analyzed NPT2A endocytosis, degradation, and membrane retention via siRNA and biochemical assays.
Main Results:
- TMEM174 knockout mice had significantly reduced lifespans.
- High phosphate diets worsened vascular calcification and mortality, while low phosphate diets improved outcomes.
- The C-terminal region of TMEM174 is essential for NPT2A binding, endocytosis, and degradation.
Conclusions:
- TMEM174 is a critical regulator of phosphate homeostasis and longevity.
- Targeting the TMEM174 C-terminus could mitigate phosphate-related vascular complications.

