: During the past funding period, we have solved the structures of the ligand binding domains of several MSCRAMMs both as apo-proteins and in complex with synthetic peptides mimicking their ligands. These studies have revealed that staphylococcal MSCRAMMs have very similar structures where the ligand binding A domains are composed of three subdomains each adopting an IgG-like fold. By examining different genomic databases, we have come to realize that up to 50% of the Cell Wall Anchored proteins of different Gram-positive pathogens can be identified as orphan MSCRAMMs. Analyses of MSCRAMM crystal structures also allowed us to postulate a unique ligand binding mechanism for the interaction of SdrG with fibrinogen that we called """"""""Dock, Lock and Latch"""""""" (D, L & L). The now proposed study is focused around the """"""""D, L, & L model of ligand binding and in specific aim 1) we will analyse this binding model in detail. Preliminary data indicate that other staphylococcal fibrinogen binding MSCRAMMs may use distinct variants of the D, L & L mechanism for ligand binding and in specific aim 2) we will explore these ideas. A different but related ligand binding mechanism (Wrap and Latch) is proposed for the collagen binding MSCRAMMs CNA and ACE and is based on prelimarily analyses of a crystal structure of CNA in complex with a synthetic collagen-like triple helix peptide (specific aim 3). We will use very similar biochemical techniques in the analyses of the different ligand binding models which will allow us the best base for comparisons. Finally in specific aim 4 we will use the data generated in the previous aims to develop a molecular modeling strategy to identify new ligands for orphan MSCRAMMs.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI020624-23
Application #
7015057
Study Section
Bacterial Pathogenesis Study Section (BACP)
Program Officer
Peters, Kent
Project Start
1989-12-01
Project End
2010-03-31
Budget Start
2006-04-01
Budget End
2007-03-31
Support Year
23
Fiscal Year
2006
Total Cost
$564,120
Indirect Cost
Name
Texas A&M University
Department
Type
Schools of Medicine
DUNS #
835607441
City
College Station
State
TX
Country
United States
Zip Code
77845
Casillas-Ituarte, Nadia N; Cruz, Carlos H B; Lins, Roberto D et al. (2017) Amino acid polymorphisms in the fibronectin-binding repeats of fibronectin-binding protein A affect bond strength and fibronectin conformation. J Biol Chem 292:8797-8810
Arora, Srishtee; Uhlemann, Anne-Catrin; Lowy, Franklin D et al. (2016) A Novel MSCRAMM Subfamily in Coagulase Negative Staphylococcal Species. Front Microbiol 7:540
Ganesh, Vannakambadi K; Liang, Xiaowen; Geoghegan, Joan A et al. (2016) Lessons from the Crystal Structure of the S. aureus Surface Protein Clumping Factor A in Complex With Tefibazumab, an Inhibiting Monoclonal Antibody. EBioMedicine 13:328-338
Liang, Xiaowen; Garcia, Brandon L; Visai, Livia et al. (2016) Allosteric Regulation of Fibronectin/?5?1 Interaction by Fibronectin-Binding MSCRAMMs. PLoS One 11:e0159118
Kuipers, Annemarie; Stapels, Daphne A C; Weerwind, Lleroy T et al. (2016) The Staphylococcus aureus polysaccharide capsule and Efb-dependent fibrinogen shield act in concert to protect against phagocytosis. Microbiology 162:1185-94
Ko, Ya-Ping; Kang, Mingsong; Ganesh, Vannakambadi K et al. (2016) Coagulase and Efb of Staphylococcus aureus Have a Common Fibrinogen Binding Motif. MBio 7:e01885-15
Garcia, Brandon L; Zhi, Hui; Wager, Beau et al. (2016) Borrelia burgdorferi BBK32 Inhibits the Classical Pathway by Blocking Activation of the C1 Complement Complex. PLoS Pathog 12:e1005404
Prasad, Joni M; Gorkun, Oleg V; Raghu, Harini et al. (2015) Mice expressing a mutant form of fibrinogen that cannot support fibrin formation exhibit compromised antimicrobial host defense. Blood 126:2047-58
Somarajan, Sudha R; La Rosa, Sabina Leanti; Singh, Kavindra V et al. (2015) The fibronectin-binding protein Fnm contributes to adherence to extracellular matrix components and virulence of Enterococcus faecium. Infect Immun 83:4653-61
Galloway-Peña, Jessica R; Liang, Xiaowen; Singh, Kavindra V et al. (2015) The identification and functional characterization of WxL proteins from Enterococcus faecium reveal surface proteins involved in extracellular matrix interactions. J Bacteriol 197:882-92

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