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Apolipoprotein E

Updated: 2026-07-20

Overview

Human Apolipoprotein E (ApoE) is a 34 kDa protein synthesized primarily in the liver and brain, playing a pivotal role in lipid metabolism. It mediates the transport of cholesterol and other lipids by binding to specific cell surface receptors. ApoE exists in three major isoforms—E2, E3, and E4—encoded by the APOE gene, with E3 being the most common variant. ApoE's significance extends beyond lipid metabolism, as it is implicated in neurodegenerative diseases like Alzheimer's, where the E4 isoform is a major genetic risk factor. Its multifunctional nature makes it a critical subject in biomedical research, particularly in cardiovascular and neurological studies.

Physical and Chemical Properties

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ApoE is a globular protein composed of 299 amino acids, with a molecular weight of approximately 34 kDa. It exhibits high solubility in aqueous buffers and is stable under physiological conditions. The protein's structure includes receptor-binding domains that enable interactions with LDL receptors and heparan sulfate proteoglycans. The three major isoforms (E2, E3, E4) differ by single amino acid substitutions, altering their binding affinity and function. For instance, ApoE2 binds poorly to LDL receptors, while ApoE4 is associated with increased amyloid-beta aggregation in Alzheimer's disease. These properties are critical for understanding its role in health and disease.

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Main Applications

ApoE is widely used in research to study lipid metabolism, atherosclerosis, and neurodegenerative disorders. Its isoforms are analyzed in genetic studies to assess cardiovascular and Alzheimer's disease risk. Diagnostic kits incorporating ApoE measurements are employed in clinical labs to evaluate lipid disorders. In therapeutics, ApoE-mimetic peptides are being explored for their potential to mitigate inflammation and promote cholesterol clearance. Additionally, recombinant ApoE is utilized in drug delivery systems to target specific tissues, leveraging its natural receptor-binding capabilities.

Safety and Storage

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ApoE is generally non-toxic and handled under standard biosafety level 1 conditions. However, proper storage is essential to maintain stability. Lyophilized powder should be stored at -20°C or below, while reconstituted solutions are best used immediately or aliquoted to avoid repeated freeze-thaw cycles. For laboratories, it is advisable to use certified endotoxin-free preparations, especially for cell culture or in vivo studies. Personal protective equipment (gloves, lab coats) is recommended to prevent contamination and ensure researcher safety.

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B2B Procurement Guide

When procuring ApoE for research or industrial use, prioritize suppliers with proven track records in protein production. Key considerations include isoform specificity (E2/E3/E4), purity (>95% by SDS-PAGE), and absence of endotoxins. Prices vary significantly based on quantity and purity, with research-grade material typically costing $200-$500 per mg. Bulk purchases may qualify for discounts, and custom modifications (e.g., fluorescent labeling) are often available. Always request certificates of analysis and ensure compliance with regulatory standards if intended for diagnostic or therapeutic applications.

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