Calpain-1 knockout reveals broad effects on erythrocyte deformability and physiology

Biochem J. 2012 Nov 15;448(1):141-52. doi: 10.1042/BJ20121008.

Abstract

Pharmacological inhibitors of cysteine proteases have provided useful insights into the regulation of calpain activity in erythrocytes. However, the precise biological function of calpain activity in erythrocytes remains poorly understood. Erythrocytes express calpain-1, an isoform regulated by calpastatin, the endogenous inhibitor of calpains. In the present study, we investigated the function of calpain-1 in mature erythrocytes using our calpain-1-null [KO (knockout)] mouse model. The calpain-1 gene deletion results in improved erythrocyte deformability without any measurable effect on erythrocyte lifespan in vivo. The calcium-induced sphero-echinocyte shape transition is compromised in the KO erythrocytes. Erythrocyte membrane proteins ankyrin, band 3, protein 4.1R, adducin and dematin are degraded in the calcium-loaded normal erythrocytes but not in the KO erythrocytes. In contrast, the integrity of spectrin and its state of phosphorylation are not affected in the calcium-loaded erythrocytes of either genotype. To assess the functional consequences of attenuated cytoskeletal remodelling in the KO erythrocytes, the activity of major membrane transporters was measured. The activity of the K+-Cl- co-transporter and the Gardos channel was significantly reduced in the KO erythrocytes. Similarly, the basal activity of the calcium pump was reduced in the absence of calmodulin in the KO erythrocyte membrane. Interestingly, the calmodulin-stimulated calcium pump activity was significantly elevated in the KO erythrocytes, implying a wider range of pump regulation by calcium and calmodulin. Taken together, and with the atomic force microscopy of the skeletal network, the results of the present study provide the first evidence for the physiological function of calpain-1 in erythrocytes with therapeutic implications for calcium imbalance pathologies such as sickle cell disease.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Blood Proteins / metabolism*
  • Bucladesine / pharmacology
  • Calcimycin / pharmacology
  • Calcium Signaling / drug effects
  • Calcium Signaling / physiology
  • Calpain / deficiency
  • Calpain / genetics
  • Calpain / physiology*
  • Cytoskeleton / metabolism
  • Cytoskeleton / ultrastructure
  • Erythrocyte Aging / drug effects
  • Erythrocyte Aging / physiology
  • Erythrocyte Deformability / drug effects
  • Erythrocyte Deformability / physiology*
  • Erythrocytes / drug effects
  • Erythrocytes / metabolism*
  • Intermediate-Conductance Calcium-Activated Potassium Channels / blood
  • Membrane Proteins / blood
  • Mice
  • Mice, Knockout
  • Microscopy, Atomic Force
  • Osmotic Fragility / drug effects
  • Osmotic Fragility / physiology
  • Plasma Membrane Calcium-Transporting ATPases / blood
  • Spherocytes / drug effects
  • Spherocytes / physiology

Substances

  • Blood Proteins
  • Intermediate-Conductance Calcium-Activated Potassium Channels
  • Kcnn4 protein, mouse
  • Membrane Proteins
  • Calcimycin
  • Bucladesine
  • Calpain
  • Capn1 protein, mouse
  • Plasma Membrane Calcium-Transporting ATPases