Overview
Pannexins are a family of transmembrane proteins that form channels facilitating the passage of small molecules between cells. They are structurally similar to connexins but differ in their sequence and function. Pannexins are primarily involved in intercellular communication and play significant roles in physiological processes such as inflammation and ATP release. Discovered in the early 2000s, pannexins have since been studied extensively for their unique properties and potential applications in medical research. They are expressed in various tissues, including the nervous system, immune system, and cardiovascular system, making them a subject of interest for therapeutic targeting.
Physical and Chemical Properties
Pannexins are integral membrane proteins that oligomerize to form channels. These channels are permeable to molecules up to 1 kDa, including ATP, ions, and other signaling molecules. The channels can be activated by various stimuli, such as mechanical stress or changes in membrane potential. The exact molecular weight and structure of pannexins can vary depending on the specific isoform. However, they generally consist of four transmembrane domains with intracellular N- and C-termini. Their function is highly regulated by post-translational modifications and interactions with other cellular components.
Main Applications
Pannexins are widely used in biological research to study intercellular communication and signaling pathways. They are particularly important in understanding the mechanisms of ATP release, which is crucial for processes like inflammation and immune response. In the medical field, pannexins are being explored as potential targets for treating diseases such as epilepsy, stroke, and chronic pain. Their role in ATP release also makes them relevant in cancer research, as ATP can influence tumor growth and metastasis.
Safety and Storage
When working with pannexins, standard laboratory safety protocols should be followed. This includes wearing appropriate personal protective equipment and handling samples in a controlled environment to prevent contamination. For storage, pannexin proteins should be kept at -20°C to maintain stability. Lyophilized samples can be stored for extended periods, while reconstituted proteins should be used promptly or aliquoted and stored at -80°C to prevent degradation.
B2B Procurement Guide
When procuring pannexins for research or industrial use, it is essential to verify the supplier's reputation and the quality of the product. Look for suppliers who provide detailed characterization data, including purity, activity, and stability information. Consider the specific isoform and post-translational modifications required for your application. Prices can vary significantly based on the source and quantity, so obtaining multiple quotes is advisable. Additionally, ensure that the supplier offers reliable technical support and documentation.
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