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2GA0

Variable Small Protein 1 of Borrelia turicatae (VspA or Vsp1)

Summary for 2GA0
Entry DOI10.2210/pdb2ga0/pdb
Related1YJG
Descriptorsurface protein VspA, NICKEL (II) ION (3 entities in total)
Functional Keywordshelical bundle, ni(ii) binding sites, immune system
Biological sourceBorrelia turicatae
Total number of polymer chains8
Total formula weight148829.37
Authors
Lawson, C.L.,Yung, B.H.,Barbour, A.G.,Zuckert, W.R. (deposition date: 2006-03-07, release date: 2006-06-27, Last modification date: 2023-08-30)
Primary citationLawson, C.L.,Yung, B.H.,Barbour, A.G.,Zuckert, W.R.
Crystal structure of neurotropism-associated variable surface protein 1 (Vsp1) of Borrelia turicatae.
J.Bacteriol., 188:4522-4530, 2006
Cited by
PubMed Abstract: Vsp surface lipoproteins are serotype-defining antigens of relapsing fever spirochetes that undergo multiphasic antigenic variation to allow bacterial persistence in spite of an immune response. Two isogenic serotypes of Borrelia turicatae strain Oz1 differ in their Vsp sequences and in disease manifestations in infected mice: Vsp1 is associated with the selection of a neurological niche, while Vsp2 is associated with blood and skin infection. We report here crystal structures of the Vsp1 dimer at 2.7 and 2.2 A. The structures confirm that relapsing fever Vsp proteins share a common helical fold with OspCs of Lyme disease-causing Borrelia. The fold features an inner stem formed by highly conserved N and C termini and an outer "dome" formed by the variable central residues. Both Vsp1 and OspC structures possess small water-filled cavities, or pockets, that are lined largely by variable residues and are thus highly variable in shape. These features appear to signify tolerance of the Vsp-OspC fold for imperfect packing of residues at its antigenic surface. Structural comparison of Vsp1 with a homology model for Vsp2 suggests that observed differences in disease manifestation may arise in part from distinct differences in electrostatic surface properties; additional predicted positively charged surface patches on Vsp2 compared to Vsp1 may be sufficient to explain the relative propensity of Vsp2 to bind to acidic glycosaminoglycans.
PubMed: 16740958
DOI: 10.1128/JB.00028-06
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.7 Å)
Structure validation

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건을2024-11-06부터공개중

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