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Spectrin

Updated: 2026-07-20

Overview

Spectrin is a pivotal cytoskeletal protein first identified in red blood cells (erythrocytes), where it constitutes ~75% of the membrane skeleton. Composed of α and β subunits that intertwine to form heterodimers, spectrin assembles into a flexible, hexagonal lattice with actin and protein 4.1 to confer mechanical resilience. This protein family (αI-βV spectrins) is expressed across cell types, playing essential roles in maintaining plasma membrane organization, anchoring transmembrane proteins, and resisting shear stress. Genetic defects in spectrin are linked to hemolytic anemias, making it a key diagnostic marker in hematology.

Physical and Chemical Properties

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Spectrin exhibits unique biophysical properties due to its repeating triple-helical domains. The α-subunit (280 kDa) and β-subunit (246 kDa) self-assemble into antiparallel dimers spanning ~100 nm. Its spring-like structure allows 2.5-fold elongation under force, critical for erythrocyte deformability in capillaries. Spectrin is heat-labile (denatures above 50°C) and sensitive to proteases. It binds calcium ions at EF-hand motifs, modulating its affinity for membrane lipids like phosphatidylserine. Commercial preparations are typically lyophilized with stabilizing buffers (e.g., sucrose) to preserve functionality.

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Main Applications

In biomedical research, spectrin is used to study membrane disorders (e.g., hereditary elliptocytosis) and aging-related erythrocyte fragility. Antibodies against spectrin degradation products (e.g., SBDP150) serve as traumatic brain injury biomarkers. Industrially, recombinant spectrin aids in developing artificial blood cells and drug delivery vesicles. Its actin-binding domains are engineered into biosensors for cytoskeletal tension measurements. Diagnostic kits utilize spectrin to detect erythrocyte membrane defects via flow cytometry.

Safety and Storage

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While spectrin poses minimal biohazard risk, proper handling prevents degradation. Store lyophilized powder at -20°C or -80°C with desiccant; reconstituted solutions are stable for 1 week at 4°C with protease inhibitors (e.g., PMSF). Avoid vortexing to prevent filament breakage. For electrophoresis, use non-reducing conditions to preserve dimeric structure. Contamination with hemoglobin or band 3 protein may affect experimental results—opt for HPLC-purified grades for critical assays.

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B2B Procurement Guide

When sourcing spectrin, prioritize suppliers specializing in cytoskeletal proteins. Key specifications include: subunit ratio (α:β = 1:1), endotoxin levels (<0.1 EU/μg), and absence of proteolytic fragments. Bulk orders (10+ mg) typically attract 15-20% discounts. For cell culture applications, choose spectrin isolated from human erythrocytes rather than animal sources to avoid xenogeneic responses. Some manufacturers offer fluorescently labeled (e.g., FITC) variants for microscopy. Lead times average 2-4 weeks for custom preparations.

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