1
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Pathogenic bacteria attach to human fibronectin through a tandem beta-zipper.
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Nature
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2003
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2.27
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2
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The molecular basis of fibronectin-mediated bacterial adherence to host cells.
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Mol Microbiol
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2004
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2.20
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3
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Crystal structures of fibronectin-binding sites from Staphylococcus aureus FnBPA in complex with fibronectin domains.
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Proc Natl Acad Sci U S A
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2008
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1.62
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4
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Fibronectin-binding proteins of gram-positive cocci.
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Microbes Infect
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2006
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1.47
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5
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Role of surface protein SasG in biofilm formation by Staphylococcus aureus.
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J Bacteriol
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2010
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1.40
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6
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The tandem beta-zipper model defines high affinity fibronectin-binding repeats within Staphylococcus aureus FnBPA.
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J Biol Chem
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2007
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1.32
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7
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Borrelia burgdorferi binds fibronectin through a tandem beta-zipper, a common mechanism of fibronectin binding in staphylococci, streptococci, and spirochetes.
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J Biol Chem
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2005
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1.27
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8
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Staphylococcus aureus host cell invasion and virulence in sepsis is facilitated by the multiple repeats within FnBPA.
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PLoS Pathog
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2010
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1.24
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9
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The solution and crystal structures of a module pair from the Staphylococcus aureus-binding site of human fibronectin--a tale with a twist.
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J Mol Biol
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2007
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1.24
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10
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BBK32, a fibronectin binding MSCRAMM from Borrelia burgdorferi, contains a disordered region that undergoes a conformational change on ligand binding.
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J Biol Chem
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2004
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1.17
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11
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High affinity streptococcal binding to human fibronectin requires specific recognition of sequential F1 modules.
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J Biol Chem
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2004
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1.14
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12
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Staphylococcal biofilm-forming protein has a contiguous rod-like structure.
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Proc Natl Acad Sci U S A
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2012
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1.04
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13
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Sialic acid mutarotation is catalyzed by the Escherichia coli beta-propeller protein YjhT.
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J Biol Chem
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2007
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1.02
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14
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Structural and functional analysis of the tandem β-zipper interaction of a Streptococcal protein with human fibronectin.
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J Biol Chem
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2011
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0.99
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15
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Staphylococcus aureus keratinocyte invasion is dependent upon multiple high-affinity fibronectin-binding repeats within FnBPA.
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PLoS One
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2011
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0.95
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16
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Cooperative binding and activation of fibronectin by a bacterial surface protein.
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J Biol Chem
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2010
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0.95
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17
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A novel fibronectin binding motif in MSCRAMMs targets F3 modules.
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PLoS One
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2009
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0.92
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18
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Divergence of catalytic mechanism within a glycosidase family provides insight into evolution of carbohydrate metabolism by human gut flora.
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Chem Biol
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2008
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0.91
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19
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The streptococcal binding site in the gelatin-binding domain of fibronectin is consistent with a non-linear arrangement of modules.
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J Biol Chem
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2010
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0.89
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20
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Furanose-specific sugar transport: characterization of a bacterial galactofuranose-binding protein.
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J Biol Chem
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2009
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0.84
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21
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Twinned or not twinned, that is the question: crystallization and preliminary crystallographic analysis of the 2F1(3)F1 module pair of human fibronectin.
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Acta Crystallogr D Biol Crystallogr
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2004
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0.84
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22
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Multi-factorial modulation of IGD motogenic potential in MSF (migration stimulating factor).
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Exp Cell Res
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2010
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0.83
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23
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The tandem β-zipper: modular binding of tandem domains and linear motifs.
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FEBS Lett
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2013
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0.82
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24
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Solution structure of a PAN module from the apicomplexan parasite Eimeria tenella.
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J Struct Funct Genomics
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2003
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0.81
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25
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Structural insight into binding of Staphylococcus aureus to human fibronectin.
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FEBS Lett
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2005
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0.81
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26
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Fibronectin structure: a new piece of the puzzle emerges.
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Structure
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2010
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0.80
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27
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Evidence for steric regulation of fibrinogen binding to Staphylococcus aureus fibronectin-binding protein A (FnBPA).
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J Biol Chem
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2014
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0.79
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28
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Probing protein-peptide binding surfaces using charged stable free radicals and transverse paramagnetic relaxation enhancement (PRE).
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J Biomol NMR
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2005
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0.79
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29
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Intrinsically disordered proteins: administration not executive.
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Biochem Soc Trans
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2012
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0.76
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30
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Phytodetoxification of the environmental pollutant and explosive 2,4,6-trinitrotoluene.
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Plant Signal Behav
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2015
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0.75
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