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Pleckstrin

Updated: 2026-07-15

Overview

Pleckstrin is a critical adapter protein first identified in platelets, where it serves as the major substrate for protein kinase C (PKC) during cellular activation. The protein contains two pleckstrin homology (PH) domains that mediate interactions with membrane phospholipids, particularly phosphatidylinositol phosphates. Its name derives from "platelet and leukocyte C kinase substrate." Beyond hematopoietic cells, pleckstrin homologs participate in diverse cellular processes across eukaryotes. Research-grade pleckstrin is commonly produced via recombinant expression systems for biochemical studies, with human and murine variants being most commercially available. The protein's modular structure makes it valuable for investigating membrane-cytoskeleton interactions.

Physical and Chemical Properties

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As a 47 kDa cytoplasmic protein, pleckstrin exhibits typical globular protein characteristics with pH-dependent solubility. Its PH domains maintain structural integrity between pH 6.5-8.5, while the central DEP domain mediates protein-protein interactions. The protein lacks disulfide bonds but contains multiple phosphorylation sites that regulate its function. Recombinant pleckstrin for research applications is typically lyophilized with stabilizing buffers (e.g., Tris-HCl, glycerol) to preserve activity. Dynamic light scattering studies show monomeric behavior in solution, though it forms transient complexes with signaling molecules like G proteins and ARF GTPases during cellular activation.

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Main Applications

In biomedical research, pleckstrin serves as a model protein for studying PH domain-lipid interactions, crucial for understanding membrane recruitment of signaling molecules. Pharmaceutical companies utilize pleckstrin-derived peptides to screen for inhibitors of thrombosis and inflammation pathways. Diagnostically, pleckstrin phosphorylation levels act as biomarkers for platelet hyperactivity disorders. Recent applications include engineered pleckstrin constructs as biosensors for visualizing phosphoinositide dynamics in live cells through fluorescence microscopy techniques like FRET.

Safety and Storage

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Laboratory-grade pleckstrin presents minimal biohazard risk when handled as purified protein. Standard precautions include glove use and avoidance of inhalation when handling lyophilized powder. Spills should be cleaned with detergent solutions followed by ethanol disinfection. For optimal stability, reconstituted solutions should be aliquoted and stored at -80°C with carrier proteins (e.g., BSA) to prevent surface adsorption. Repeated freeze-thaw cycles degrade functional activity. Shipping typically occurs on dry ice for long-distance transport, with cold chain maintenance being critical for activity preservation.

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B2B Procurement Guide

Research institutions should specify required species variants (human/murine/rat) and purity levels (typically >90% for biochemical assays, >95% for structural studies). Key suppliers include specialty recombinant protein producers like Abcam, Sino Biological, and R&D Systems. Bulk purchasers should request batch-specific certificates of analysis detailing endotoxin levels (<1 EU/μg), sterility testing results, and functional validation data (e.g., lipid binding assays). Lead times for custom expressions range from 4-8 weeks. Some vendors offer fluorescently tagged versions (e.g., GFP, mCherry fusions) for live-cell imaging applications at 20-30% price premiums.

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