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Homocyst(e)ine induces calcium second messenger in vascular smooth muscle cells

V S Mujumdar1, M R Hayden, S C Tyagi

  • 1Department of Physiology and Biophysics, Center of Excellence in Cardiovascular-Renal Research, University of Mississippi Medical Center, Jackson, Mississippi 39216-4505, USA.

Insights

Homocysteine triggers intracellular calcium release in vascular smooth muscle cells (VSMC), promoting extracellular matrix deposition and enhancing vascular reactivity. This mechanism contributes to vascular disease development.

Area of Science:

  • Cardiovascular Biology
  • Cellular Physiology
  • Biochemistry

Background:

  • Elevated homocysteine levels are linked to coronary heart disease.
  • Homocysteine induces vascular smooth muscle cell (VSMC) proliferation and extracellular matrix (ECM) deposition.
  • The precise mechanisms underlying homocysteine's vascular effects remain largely unknown.

Purpose of the Study:

  • To investigate the role of intracellular calcium release in mediating homocysteine-induced ECM production in VSMCs.
  • To elucidate the signaling pathways involved in homocysteine's effects on VSMCs.
  • To determine homocysteine's impact on VSMC responsiveness to angiotensin II.

Main Methods:

  • Isolation and characterization of aortic VSMCs from Sprague-Dawley rats.
  • Quantification of intracellular calcium ([Ca(2+)](i)) transients using fura2/AM spectrofluorometry.
  • Assessment of collagen production via immunoblot analysis and VSMC responsiveness to angiotensin II.

Main Results:

  • Homocysteine induced dose-dependent intracellular calcium ([Ca(2+)](i)) transients, dependent on intracellular stores.
  • Protein kinase C activation and nitric oxide synthase inhibition modulated homocysteine-induced calcium release.
  • Inhibitors of phospholipase A(2), HMG CoA reductase, tyrosine kinase, and calcium channels blocked the homocysteine effect.
  • Homocysteine-induced calcium transients correlated with increased collagen production and enhanced VSMC responsiveness to angiotensin II.

Conclusions:

  • Homocysteine initiates vascular smooth muscle cell (VSMC) changes via intracellular calcium release.
  • Multiple signaling pathways, including protein kinase C and calcium channels, are implicated in homocysteine's action.
  • Homocysteine's effects on calcium signaling contribute to extracellular matrix deposition and altered vascular reactivity, potentially driving vascular disease.

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