Plasma membrane calcium-ATPase isoform four distribution changes during corneal epithelial wound healing

Ernest F Talarico1

  • 1Department of Anatomy & Cell Biology, Indiana University School of Medicine-Northwest, Gary, IN 46408-1197, USA. etalaric@iun.edu

Molecular Vision
|December 9, 2010
PubMed
Abstract

Insights

Plasma Membrane Calcium-ATPases (PMCAs) are crucial for calcium regulation. PMCA4 expression changes during corneal wound healing, and its knockdown impairs healing, suggesting a role in cell migration.

Area of Science:

  • Cell Biology
  • Ophthalmology
  • Biochemistry

Background:

  • Plasma Membrane Calcium-ATPases (PMCAs) regulate intracellular calcium (Ca2+).
  • PMCA4 is the primary PMCA isoform in human corneal epithelium (hCE).
  • The role of PMCA4 in corneal epithelial wound healing is largely unknown.

Purpose of the Study:

  • To document PMCA4 expression in rabbit corneal epithelium (rbCE).
  • To investigate PMCA4 distribution during corneal epithelial wound healing in a rabbit model.
  • To assess the impact of PMCA4 knockdown on corneal epithelial wound closure in vitro.

Main Methods:

  • RT-PCR to detect PMCA4 mRNA in rbCE.
  • Immunoblotting and immunocytochemistry to assess PMCA4 protein expression and localization.
  • Corneal wound induction in rabbits and immunohistochemical analysis of PMCA4 distribution.
  • siRNA-mediated knockdown of PMCA4 in human corneal epithelial cells (hTCEpi) followed by wound healing assays.

Main Results:

  • PMCA4 mRNA (PMCA4x variant) and protein were detected in rbCE.
  • PMCA4 immunolocalization shifted during wound healing, with distinct patterns in basal cells.
  • PMCA4 knockdown in hTCEpi cells significantly impaired wound closure.
  • Increased cytoplasmic PMCA4 immunoreactivity was observed post-wounding.

Conclusions:

  • PMCA4 is highly expressed in rabbit corneal epithelium.
  • PMCA4 redistribution during wound healing suggests a role in calcium-mediated processes.
  • PMCA4 is essential for efficient corneal epithelial wound healing and cell migration.

Related Concept Videos

Enlargement of the Plasma Membrane01:22

Enlargement of the Plasma Membrane

Cell division and enlargement are processes that require precise control. The control ensures that cell division cannot proceed unless the cell has grown to a specific size. A spherical, dividing cell requires an approximately 1.6X increase in its surface area to double its volume. The secretory pathway also has a significant role in cell membrane enlargement. Secretory vesicles that bud off from the Golgi apparatus and later fuse with the plasma membrane during exocytosis are a major source of...
Feedback Regulation of Calcium Concentration01:27

Feedback Regulation of Calcium Concentration

Calcium is an essential signaling molecule required for various cellular functions. Calcium pumps and ion channels on cell and organellar membranes, such as those on the endoplasmic reticulum (ER), regulate calcium concentrations inside the cell. They remain closed, keeping the cytosolic calcium levels low at a resting state.
Various transmembrane receptors, such as G protein-coupled receptors (GPCRs), elicit a response to extracellular signals by increasing cytosolic calcium. Activated GPCRs...
Membrane Asymmetry Regulating Transporters01:19

Membrane Asymmetry Regulating Transporters

Enzymes like flippase, floppase, and scramblase transfer phospholipids from one layer to another in the membrane, thereby affecting membrane asymmetry.
Flippase
Eukaryotic flippases are type-IV P-type ATPases or P4-ATPases belonging to P-type ATPase family proteins that are membrane-bound pumps involved in the ATP-mediated transport of ions and molecules across the membrane. Flippases flip specific phospholipids from the outer to the inner leaflet of a membrane. All P4-ATPases have one...
Cellular Injury IV: Necrosis01:16

Cellular Injury IV: Necrosis

Necrosis is a form of irreversible cell death caused by severe injury such as ischemia, toxins, or trauma. Unlike programmed cell death, it is an uncontrolled, pathological process that typically provokes inflammation in surrounding tissues.Pathophysiologic ChangesNecrosis begins when cells sustain critical damage, leading to swelling of organelles, particularly mitochondria, and rapid ATP depletion. As energy levels decline, membrane ion pumps fail, leading to calcium influx and eventually,...
Phases of Wound Repair01:28

Phases of Wound Repair

Following injury, the integrity of the injured tissues must be reestablished. For example, in skin tissue, wound repair involves coordination among resident skin cells, blood mononuclear cells, extracellular matrix, growth factors, and cytokines to complete the healing cascade.
Formation of Blood Clot
In case of deep injuries, trauma to blood vessels results in blood loss. In the meantime, phospholipids released from the ruptured endothelial cellular membrane are converted into arachidonic...
Calmodulin-dependent Signaling01:16

Calmodulin-dependent Signaling

Calmodulin (CaM) is a calcium-binding protein in eukaryotes that controls various calcium-regulated cellular processes. It has four calcium-binding sites that bind calcium to form the calcium-calmodulin ( Ca2+-CaM) complex. GPCR stimulation increases the calcium levels in the cells that bind to CaM and induces a conformational change.
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...