Related Experiment Videos
Increased membrane-protein methylation in hereditary spherocytosis. A marker of cytoskeletal disarray
D Ingrosso1, S D'Angelo, A F Perna
1Institute of Biochemistry of Macromolecules, Second University of Naples, Italy.
Abstract:
Protein carboxyl methyltransferase of type II selectively recognizes L-isoaspartyl and D-aspartyl residues spontaneously occurring in proteins and peptide substrates. Membrane protein methylation levels increase with erythrocyte aging in circulation, in parallel with the spontaneous formation of abnormal aspartyl sites, due to protein intrinsic instability. We found that enzymic methyl esterification of erythrocyte membrane proteins in hereditary spherocytosis, a model of cytoskeletal disarray, is significantly increased compared to normal red blood cells. This cannot be explained by an increase in mean age of spherocytes, which are on the contrary significantly younger than control cells. No differences in cytosolic methyltransferase specific activity, as well as in the intracellular concentrations of the methyl donor adenosylmethionine and/or of the methylation inhibitor adenosylhomocysteine were observed. We identified bands 2.1, 4.1 and 4.2 as the main targets for increased methylation, whose levels were correlated with the degree of spectrin deficiency associated with this anemia. Our findings indicate that membrane-protein methyl esterification represents a marker of membrane structural alteration in vivo in spherocytosis. We hypothesize that either an increased accessibility of methylation sites normally not available to the methyltransferase, or accelerated formation of methyl-accepting sites in membrane proteins are present in spherocytosis.
Insights
Protein methylation, specifically methyl esterification, is elevated in hereditary spherocytosis red blood cells, indicating membrane structural damage. This occurs despite younger cell age, suggesting altered protein stability.
Area of Science:
- Biochemistry
- Cell Biology
- Hematology
Background:
- Protein carboxyl methyltransferase type II targets abnormal aspartyl residues.
- Erythrocyte aging increases membrane protein methylation due to spontaneous aspartyl site formation.
- Hereditary spherocytosis involves cytoskeletal disarray and red blood cell membrane abnormalities.
Purpose of the Study:
- To investigate protein methylation levels in hereditary spherocytosis.
- To determine if increased methylation correlates with spectrin deficiency and membrane alterations.
- To explore the mechanisms behind altered methylation in spherocytosis.
Main Methods:
- Enzymic methyl esterification assays on erythrocyte membrane proteins.
- Comparison of methylation levels between hereditary spherocytosis and normal red blood cells.
- Analysis of protein targets and correlation with spectrin deficiency.
Main Results:
- Erythrocyte membrane proteins in hereditary spherocytosis show significantly increased methyl esterification compared to controls.
- This increase is not due to older cell age; spherocytes are younger.
- Bands 2.1, 4.1, and 4.2 are primary targets for increased methylation, correlating with spectrin deficiency.
Conclusions:
- Increased membrane protein methyl esterification serves as a marker for in vivo membrane structural alteration in spherocytosis.
- Hypotheses include increased accessibility of methylation sites or accelerated formation of these sites in spherocytosis membrane proteins.