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Total Protein Extraction and 2-D Gel Electrophoresis Methods for Burkholderia Species
Published on: October 15, 2013
Crystallization and preliminary X-ray diffraction analysis of BipD, a virulence factor from Burkholderia pseudomallei
M J Knight1, A Ruaux, H Mikolajek
1School of Biological Sciences, University of Southampton, Bassett Crescent East, Southampton SO16 7PX, England.
Abstract:
Burkholderia pseudomallei, the causative agent of melioidosis, possesses a protein-secretion apparatus that is similar to those found in Salmonella and Shigella. A major function of these secretion systems is to secrete virulence-associated proteins into target cells of the host organism. The BipD gene of B. pseudomallei encodes a secreted virulence factor that is similar in sequence and most likely functionally analogous to IpaD from Shigella and SipD from Salmonella. Thus, the BipD protein is likely to be a component of a type III protein-secretion system (TTSS) in B. pseudomallei. Proteins in the same class as BipD, such as IpaD and SipD, are thought to act as extracellular chaperones to help the hydrophobic translocator proteins enter the target cell membrane, where they form a pore and might even link the translocon pore with the secretion needle. There is evidence that the translocator proteins also bind an integrin which stimulates actin-mediated insertion of the bacterium into the host-cell membrane. Native BipD has been crystallized in a monoclinic crystal form that diffracts X-rays to 2.5 angstroms resolution. BipD protein which incorporates selenomethionine (SeMet-BipD) has also been expressed and forms crystals which diffract to a higher resolution of 2.1 angstroms.
Insights
Burkholderia pseudomallei
Area of Science:
- Microbiology
- Structural Biology
- Molecular Biology
Background:
- Burkholderia pseudomallei causes melioidosis, a serious infection.
- It utilizes a type III protein-secretion system (TTSS) for virulence.
- Virulence factors like BipD are secreted into host cells.
Purpose of the Study:
- To characterize the BipD protein from B. pseudomallei.
- To understand its role in the TTSS and host cell interaction.
- To determine the high-resolution structure of BipD.
Main Methods:
- Crystallization of native BipD and selenomethionine-incorporated BipD (SeMet-BipD).
- X-ray diffraction to determine crystal structures.
- Sequence and functional homology analysis with related proteins (IpaD, SipD).
Main Results:
- Native BipD crystallized in a monoclinic form diffracting to 2.5 angstroms.
- SeMet-BipD crystallized diffracting to a higher resolution of 2.1 angstroms.
- BipD is functionally analogous to IpaD and SipD, likely acting as an extracellular chaperone in the TTSS.
Conclusions:
- BipD is a crucial virulence factor of Burkholderia pseudomallei.
- Its structural characterization provides insights into TTSS function.
- BipD facilitates bacterial entry into host cells via interaction with translocator proteins and integrins.
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