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CAS 425642-32-6|GPI choline

CAS 425642-32-6, also known as GPI choline, is a chemical compound that has gained attention in the field of medicine and neurobiology. GPI choline is a precursor molecule that plays a crucial role in the synthesis of glycosylphosphatidylinositol (GPI) anchors, which are essential for the attachment of proteins to cell surfaces.

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CAS 425642-32-6, also known as GPI choline, is a chemical compound that has gained attention in the field of medicine and neurobiology. GPI choline is a precursor molecule that plays a crucial role in the synthesis of glycosylphosphatidylinositol (GPI) anchors, which are essential for the attachment of proteins to cell surfaces. These GPI anchors have been found to be involved in various cellular processes, including signal transduction, cell adhesion, and immune response. Research has shown that deficiencies in GPI anchors can lead to severe neurodevelopmental disorders, making GPI choline an important molecule of interest in understanding and potentially treating these conditions. Further investigations into the properties and functions of GPI choline are ongoing, with the hope of uncovering its full potential in the field of medicine.

Product Name: GPI choline
Synonyms: D-myo-Inositol, 1-[(2R)-2,3-dihydroxypropyl hydrogen phosphate], ion(1-), 2-hydroxy-N,N,N-trimethylethanaminium (1:1);Glycerophosphoinositol choline;GPI choline;Plain;PuriActives GPI
CAS: 425642-32-6
MF: C14H32NO12P
MW: 437.38

CAS 425642-32-6 refers to the specific chemical compound identified by its unique Chemical Abstracts Service (CAS) registry number. This particular compound is known as GPI choline. GPI choline is a phospholipid-derived molecule that plays a crucial role in various biological processes.

GPI choline, also known as glycosylphosphatidylinositol choline, is a lipid anchor that attaches specific proteins to the outer surface of cell membranes. It is involved in the formation of lipid rafts, which are specialized microdomains within the cell membrane that facilitate various cellular processes such as signal transduction, receptor clustering, and cell adhesion.

In addition to its structural role, GPI choline has been found to participate in immune responses, neuronal development, and synaptic function. It acts as a regulator of immune cell activation and modulates the release of pro-inflammatory cytokines. In the nervous system, GPI choline contributes to the formation and maintenance of synapses, facilitating neuronal communication.

Furthermore, GPI choline has been investigated for its potential therapeutic applications. Studies have shown its involvement in various diseases, including neurodegenerative disorders, inflammatory conditions, and cancer. Modulating GPI choline levels or targeting its associated proteins may offer potential therapeutic interventions for these diseases.

Overall, CAS 425642-32-6, also known as GPI choline, is a biologically significant compound that plays a vital role in cellular processes, immune responses, and neuronal functions. Its diverse functions and potential therapeutic applications make it an intriguing molecule for further research and exploration.

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