Transforming Growth Factor Beta 1 Drives a Switch in Connexin Mediated Cell-to-Cell Communication in Tubular Cells of

Claire Hills1, Gareth William Price1, Mark John Wall2

  • 1Joseph Banks Laboratories, Green Lane, University of Lincoln, Lincoln, United Kingdom.

Abstract

Insights

High glucose in diabetic nephropathy increases transforming growth factor-beta1 (TGFβ1), which alters connexin expression and cell communication. This leads to increased ATP release, inflammation, and fibrosis, suggesting connexins as a therapeutic target.

Area of Science:

  • Cellular Biology
  • Renal Physiology
  • Endocrinology

Background:

  • Cell-to-cell communication changes are implicated in diabetes complications.
  • The role of connexins in diabetic kidney disease progression is not well understood.

Purpose of the Study:

  • To investigate the impact of glucose-induced transforming growth factor-beta1 (TGFβ1) on connexin expression and cell communication in renal tubular epithelial cells.
  • To explore the mechanisms linking TGFβ1, connexins, and downstream inflammatory markers in the context of diabetic nephropathy.

Main Methods:

  • Connexin-26 (CX26) and connexin-43 (CX43) expression analyzed in patient biopsies and cultured renal cells (hPTECs, HK2) under varying glucose and TGFβ1 conditions.
  • Cell-to-cell communication assessed via junctional conductance (patch clamp) and hemichannel activity (dye uptake, ATP release).
  • Interleukin-6 (IL-6) and fibronectin expression measured to evaluate downstream effects of TGFβ1 and ATP.

Main Results:

  • Diabetic nephropathy biopsies showed increased CX26 and CX43 expression.
  • TGFβ1 reduced gap-junction intercellular communication (GJIC) but increased hemichannel activity and ATP release in renal cells.
  • TGFβ1 and ATPγS elevated IL-6 and fibronectin expression, with apyrase partially blunting TGFβ1's effect.

Conclusions:

  • Chronic glucose exposure and TGFβ1 increase connexin expression in renal tubules, mirroring diabetic nephropathy.
  • Despite increased connexin levels, GJIC decreases while hemichannel function and ATP release rise, promoting inflammation and fibrosis.
  • Connexin-mediated communication represents a potential therapeutic target for diabetic nephropathy.

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