The role of Zn2+ in shaping intracellular Ca2+ dynamics in the heart

J Gen Physiol. 2023 Jul 3;155(7):e202213206. doi: 10.1085/jgp.202213206. Epub 2023 Jun 16.

Abstract

Increasing evidence suggests that Zn2+ acts as a second messenger capable of transducing extracellular stimuli into intracellular signaling events. The importance of Zn2+ as a signaling molecule in cardiovascular functioning is gaining traction. In the heart, Zn2+ plays important roles in excitation-contraction (EC) coupling, excitation-transcription coupling, and cardiac ventricular morphogenesis. Zn2+ homeostasis in cardiac tissue is tightly regulated through the action of a combination of transporters, buffers, and sensors. Zn2+ mishandling is a common feature of various cardiovascular diseases. However, the precise mechanisms controlling the intracellular distribution of Zn2+ and its variations during normal cardiac function and during pathological conditions are not fully understood. In this review, we consider the major pathways by which the concentration of intracellular Zn2+ is regulated in the heart, the role of Zn2+ in EC coupling, and discuss how Zn2+ dyshomeostasis resulting from altered expression levels and efficacy of Zn2+ regulatory proteins are key drivers in the progression of cardiac dysfunction.

Publication types

  • Review
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Calcium* / metabolism
  • Heart
  • Homeostasis
  • Membrane Transport Proteins
  • Zinc* / metabolism

Substances

  • Calcium
  • Zinc
  • Membrane Transport Proteins