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Centrosomal Protein

Updated: 2026-07-15

Overview

Centrosomal proteins are a diverse group of structural and regulatory proteins that constitute the centrosome, the primary microtubule-organizing center in animal cells. These proteins are critical for proper centrosome duplication, maturation, and function during the cell cycle. Over 100 centrosomal proteins have been identified, including well-characterized examples like γ-tubulin, pericentrin, and centrosomin. In biological research, centrosomal proteins are studied for their roles in cell division, particularly in spindle formation during mitosis. Dysregulation of these proteins is associated with various diseases, including cancer and microcephaly. The study of centrosomal proteins provides insights into fundamental cellular processes and potential therapeutic targets.

Physical and Chemical Properties

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As a class of proteins, centrosomal proteins exhibit varied physical and chemical properties depending on their specific amino acid composition and post-translational modifications. Most are soluble in aqueous buffers at physiological pH, though some require specific detergents or salts for stability. Many centrosomal proteins contain coiled-coil domains that facilitate protein-protein interactions within the centrosome structure. Typical research-grade centrosomal proteins are provided in purified form, either as lyophilized powders or in storage buffers containing glycerol or other stabilizers. Their molecular weights range from approximately 20 kDa to over 300 kDa, with isoelectric points varying according to their amino acid sequences. These proteins are generally stable at -80°C but may degrade if subjected to repeated freeze-thaw cycles.

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Main Applications

In research settings, centrosomal proteins are primarily used to study cell division mechanisms, centrosome biology, and related disease pathways. They serve as important tools in microscopy studies, where they can be tagged with fluorescent markers to visualize centrosome dynamics. These proteins are also used in biochemical assays to investigate protein-protein interactions within the centrosome. Pharmaceutical applications include screening for compounds that modulate centrosome function, which may have potential as anti-cancer therapeutics. Some centrosomal proteins are being investigated as biomarkers for certain cancer types. Additionally, these proteins are essential reagents in developmental biology studies, particularly in understanding conditions like primary microcephaly that result from centrosomal defects.

Safety and Storage

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Centrosomal proteins for research use should be handled with standard laboratory precautions, including the use of gloves and protective eyewear. While most purified preparations are not inherently hazardous, some may require handling in Biosafety Level 2 conditions depending on their source and preparation method. Proper storage is critical for maintaining protein stability and functionality. Lyophilized proteins should be stored at -20°C or below, while solution formulations typically require storage at -80°C. Avoid repeated freeze-thaw cycles by aliquoting proteins into single-use portions. Most centrosomal proteins are stable for at least one year when stored properly, though activity should be verified before critical experiments.

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B2B Procurement Guide

When procuring centrosomal proteins for research or development purposes, specify the exact protein isoform required, as many centrosomal proteins have multiple splice variants with distinct functions. Verify the purity level (typically >90% for most applications) and whether the protein is native or recombinant. Consider whether post-translational modifications are important for your application. For bulk purchases, request certificates of analysis and consider arranging for stability testing. Lead times for custom preparations may range from 4-12 weeks depending on the protein's complexity. Some suppliers offer technical support for experimental design using these specialized proteins, which can be valuable for optimizing research outcomes.

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