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PDBsum entry 1v1p
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Virulence factor
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PDB id
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1v1p
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Contents |
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* Residue conservation analysis
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References listed in PDB file
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Key reference
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Title
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Structural relationships and cellular tropism of staphylococcal superantigen-Like proteins.
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Authors
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A.M.Al-Shangiti,
C.E.Naylor,
S.P.Nair,
D.C.Briggs,
B.Henderson,
B.M.Chain.
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Ref.
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Infect Immun, 2004,
72,
4261-4270.
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PubMed id
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Abstract
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The staphylococcal superantigen-like proteins (SSLs) are a family of polymorphic
paralogs encoded in the Staphylococcus aureus genome whose function is unknown.
The crystal structure of SSL7 was determined and compared to that of SSL5 and
that of a classical superantigen, streptococcal pyrogenic exotoxin. Although the
overall architecture of the superantigen family is retained in both SSL7 and
SSL5, there are significant differences in the structures which suggest that the
characteristic major histocompatibility complex binding site of superantigens
has been lost. To complement these data, the abilities of SSL7 and a closely
related paralog, SSL9, to interact with cells of the immune system were
investigated. In populations of human white blood cells, both SSLs interacted
selectively with monocytes via specific saturable but separate binding sites,
which led to rapid uptake of the SSLs. In addition, SSLs were rapidly taken up
by dendritic cells, but not by macrophages, into the same endosomal compartment
as dextran. The ability of these secreted proteins to target antigen-presenting
cells may enhance a misplaced antibody response against the proteins, which may
facilitate bacterial colonization rather than contribute to host protection.
Like classical superantigens, therefore, SSLs may distract the host's immune
system, but they may do so via entirely different molecular mechanisms.
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