Cadmium inhibits vacuolar H(+)-ATPase and endocytosis in rat kidney cortex

C M Herak-Kramberger1, D Brown, I Sabolić

  • 1Institute for Medical Research and Occupational Health, Zagreb, Croatia.

Insights

Cadmium exposure damages kidney proximal tubules by impairing vacuolar H(+)-ATPase (V-ATPase) function and reducing protein reabsorption. This leads to decreased endocytosis and contributes to kidney dysfunction.

Area of Science:

  • Nephrology
  • Toxicology
  • Cell Biology

Background:

  • Cadmium (Cd) intoxication impairs mammalian proximal tubule (PT) reabsorption.
  • The precise mechanism, particularly the role of vacuolar H(+)-ATPase (V-ATPase) and endocytosis, remains unclear.

Purpose of the Study:

  • To investigate the effects of Cd on V-ATPase and endocytosis in rat renal PT.
  • To elucidate Cd's impact on cellular acidification mechanisms in renal organelles.

Main Methods:

  • In vivo studies in rats exposed to Cd, examining PTs via immunofluorescence and Western blot.
  • In vitro studies using isolated renal cortical organelles to assess V-ATPase activity and acidification.
  • Functional assessment of endocytosis using fluorescein-labeled dextran.

Main Results:

  • Cd intoxication significantly reduced V-ATPase activity (40%) and V-ATPase subunit abundance in rat renal BBM.
  • In vivo studies showed diminished endocytosis and loss of endocytic structures in PT cells of Cd-treated rats.
  • In vitro, Cd inhibited V-ATPase activity, intravesicular acidification, and dissipated pH gradients in renal organelles.

Conclusions:

  • Cd impairs renal PT acidification by reducing V-ATPase protein, inhibiting its activity, and disrupting pH gradients.
  • These effects inhibit endocytosis and vesicle-mediated transport, contributing to reduced kidney reabsorptive capacity.

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