Biorbyt

Products for advancing your discoveries

 
From antibodies to proteins, biochemicals to ELISA kits, Biorbyt's high quality research products are available for you to enable world class research and contribution to a deeper understanding of life sciences.
 
A comprehensive catalog of life science research products covering the areas of Neuroscience, Signal transduction, Cell Biology, Cancer Metabolism, Cardiovascular and others
 
Product range :
 
  • Antibodies
Choose from over 100,000 primary antibodies and over 2,000 secondary antibodies. Monoclonals and polyclonals tested in a number of applications - WB, ELISA, IHC, FACS and many more.
 
  • Proteins
Choose from over 7,000 proteins and over 400 active proteins. All of our proteins have been validated for use in ELISAs, WB and IHC-P
 
  • Biochemicals
We have over 10,000 biochemicals for use in your research.
 
  • ELISA kits
We have over 2,000 ELISA kits covering many research areas . Each kit comes with a fully detailed protocol and examples of expected results.
 
 
Phosphatidyl Glycerol

Phosphatidyl Glycerol

Phosphatidylglycerol (PG) is a phospholipid that can be used as a detergent for membrane proteins, particularly in studies where a more native-like lipid environment is desired. While traditional detergents are often synthetic molecules, phospholipids like PG offer a more biomimetic approach due to their natural occurrence in biological membranes. Here are key considerations regarding the use of PG as a detergent for membrane proteins:

  • Phospholipid Structure: PG consists of a glycerol backbone, two fatty acid chains, a phosphate group, and a glycerol. Its amphipathic nature allows it to interact with both hydrophobic and hydrophilic regions of membrane proteins, mimicking the lipid bilayer environment.

  • Biomimicry: PG is a major component of bacterial membranes and is also found in the inner mitochondrial membrane. Using PG as a detergent provides a lipid environment more akin to the native membrane, enhancing the preservation of the native conformation and functionality of membrane proteins.

  • Stability of Membrane Proteins: Phospholipids like PG can contribute to the stability of membrane proteins during solubilization. The native-like lipid environment may help retain the structural integrity of proteins, crucial for downstream analyses such as structural determination or functional assays.

  • Interaction with Lipid Domains: PG can play a role in the formation of lipid domains within membranes. This property is relevant when studying membrane proteins associated with specific lipid microenvironments or lipid rafts.

  • Minimal Interference: PG, being a natural component of cellular membranes, may introduce less interference in downstream applications compared to some synthetic detergents. This is especially important for studies requiring a close representation of the native lipid environment.

  • Optimization Considerations: Like any detergent, the effective use of PG requires optimization of concentration, temperature, and lipid-protein interactions to ensure proper solubilization without compromising protein stability.

  • Applicability to Specific Proteins: PG may be particularly useful for studies involving bacterial membrane proteins or mitochondrial membrane proteins, where PG is naturally abundant.

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